# Publications that used openQCM

> Source page: https://openqcm.com/scientific-papers
> Markdown version for AI agents and readers of plain text. Site guide: https://openqcm.com/llms.txt · Everything in one file: https://openqcm.com/llms-full.txt

409 publications that used openQCM instruments as the measurement tool. Each line: title — authors, journal (year), DOI, instrument, page on this site. Machine-readable records: https://openqcm.com/wp-json/wp/v2/paper

- “Do It Yourself” Peristaltic Pump and Flowcell for QCM Biosensor — Ipek Cetin, Gorkem Yilmaz, Hande Halilibrahimoglu et al., *2017 21st National Biomedical Engineering Meeting (BIYOMUT)* (2017). DOI: 10.1109/biyomut.2017.8479100. Instrument: openQCM 1. https://openqcm.com/scientific-papers/do-it-yourself-peristaltic-pump-and-flowcell-for-qcm-biosensor
- (Invited) Molecular Layer Deposition from Dissolved Precursors — Johannes Fichtner, Yanlin Wu, Jakob Felix Hitzenberger et al., *ECS Transactions* (2017). DOI: 10.1149/08003.0063ecst. Instrument: openQCM. https://openqcm.com/scientific-papers/invited-molecular-layer-deposition-from-dissolved-precursors
- A 3D printed toolbox for opto-mechanical components — Luis José Salazar-Serrano, Juan P. Torres, Alejandra Valencia, *PloS one* (2017). DOI: 10.1371/journal.pone.0169832. Instrument: openQCM. https://openqcm.com/scientific-papers/a-3d-printed-toolbox-for-opto-mechanical-components
- A biofilm-derived peptide as an underwater adhesive — Xin Huang, Ewelina D. Liszczyk, Ramesh Prasad et al., *bioRxiv (Cold Spring Harbor Laboratory)* (2026). DOI: 10.64898/2026.08.05.742774. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/a-biofilm-derived-peptide-as-an-underwater-adhesive
- A combined experimental and DFT study on the zero valent iron/reduced graphene oxide doped QCM sensor for determination of trace concentrations of As using a Flow-batch system — Julián Gutiérrez, Yael N Robein, Julián Juan et al., *Sensors and Actuators B: Chemical* (2023). DOI: 10.1016/j.snb.2023.135233. Instrument: openQCM. https://openqcm.com/scientific-papers/a-combined-experimental-and-dft-study-on-the-zero-valent-iron-reduced-graphene-oxide-doped-qcm-sensor-for-determination-of-trace-concentrations-of-as-using-a-flow-batch-system
- A Comparative Assessment of a Piezoelectric Biosensor Based on a New Antifouling Nanolayer and Cultivation Methods: Enhancing S. aureus Detection in Fresh Dairy Products — Michala Forinová, Anna Seidlová, Alina Pilipenco et al., *Current Research in Biotechnology* (2023). DOI: 10.1016/j.crbiot.2023.100166. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/a-comparative-assessment-of-a-piezoelectric-biosensor-based-on-a-new-antifouling-nanolayer-and-cultivation-methods-enhancing-s-aureus-detection-in-fresh-dairy-products
- A Comparative Study of Interdigitated Electrode and Quartz Crystal Microbalance Transduction Techniques for Metal–Organic Framework-Based Acetone Sensors — Karumbaiah Chappanda Nanaiah, Mohammed Tchalala, Osama Shekhah et al., *Sensors* (2018). DOI: 10.3390/s18113898. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-comparative-study-of-interdigitated-electrode-and-quartz-crystal-microbalance-transduction-techniques-for-metal-organic-framework-based-acetone-sensors
- A detailed investigation on interactions between magnetite nanoparticles functionalized with aminated chitosan and a cell model membrane — Emilia Piosik, Paweł Klimczak, Marta Ziegler-Borowska et al., *Materials Science and Engineering: C* (2020). DOI: 10.1016/j.msec.2019.110616. Instrument: openQCM 1. https://openqcm.com/scientific-papers/a-detailed-investigation-on-interactions-between-magnetite-nanoparticles-functionalized-with-aminated-chitosan-and-a-cell-model-membrane
- A functional metal-organic framework for dual gas sensing (CH4/CO2) using a quartz crystal microbalance — J. S. Malhotra, M. Kubus, K. S. Pedersen et al., *Danish Offshore Technology Conference 2022, Kolding* (2022). Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/a-functional-metal-organic-framework-for-dual-gas-sensing-ch4-co2-using-a-quartz-crystal-microbalance
- A highly selective biosensor based on peptide directly derived from the HarmOBP7 aldehyde binding site — Tomasz Wasilewski, Bartosz Szulczyński, Marek Wojciechowski et al., *Sensors* (2019). DOI: 10.3390/s19194284. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-highly-selective-biosensor-based-on-peptide-directly-derived-from-the-harmobp7-aldehyde-binding-site
- A highly sensitive safrole sensor based on polyvinyl acetate (PVAc) nanofiber-coated QCM — Kuwat Triyana, Aditya Rianjanu, Doni Bowo Nugroho et al., *Scientific Reports* (2019). DOI: 10.1038/s41598-019-51851-0. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-highly-sensitive-safrole-sensor-based-on-polyvinyl-acetate-pvac-nanofiber-coated-qcm
- A Label-Free Graphene Oxide-Enhanced Piezoelectric Acoustic Biosensor for DLX1 Detection — Thita Sonklin, Dhanunjaya Munthala, Machchhendra Thapa et al., *Analytica* (2026). DOI: 10.3390/analytica7030063. Instrument: openQCM. https://openqcm.com/scientific-papers/a-label-free-graphene-oxide-enhanced-piezoelectric-acoustic-biosensor-for-dlx1-detection
- A Multi-scale Interfacial Investigation of Organic Friction Modifiers in Hydrocarbon — David Burgess, Peter J. Fryer, Ian McRobbie et al., *Tribology Letters* (2026). DOI: 10.1007/s11249-026-02137-w. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/a-multi-scale-interfacial-investigation-of-organic-friction-modifiers-in-hydrocarbon
- A nanoscale paper-based near-infrared optical nose (NIRON) — Vlad Shumeiko, Yossi Paltiel, Gili Bisker et al., *Biosensors and Bioelectronics* (2021). DOI: 10.1016/j.bios.2020.112763. Instrument: openQCM. https://openqcm.com/scientific-papers/a-nanoscale-paper-based-near-infrared-optical-nose-niron
- A New Perspective on Interphase Formation in Li-ion Batteries by Combined EIS & EQCM-D — Paul G Kitz (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/a-new-perspective-on-interphase-formation-in-li-ion-batteries-by-combined-eis-eqcm-d
- A Novel Biosensor for the Early Detection of Aethina tumida via Kodamaea ohmeri in Honeybee Colonies — Paola Ghisellini, Patrizia Garbati, Marco Pietropaoli et al., *Insects* (2025). DOI: 10.3390/insects16040363. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/a-novel-biosensor-for-the-early-detection-of-aethina-tumida-via-kodamaea-ohmeri-in-honeybee-colonies
- A novel exposure system termed NAVETTA for in vitro laminar flow electrodeposition of nanoaerosol and evaluation of immune effects in human lung reporter cells — Evelien Frijns, Sandra Verstraelen, Linda Corinna Stoehr et al., *Environmental Science &amp; Technology* (2017). DOI: 10.1021/acs.est.7b00493. Instrument: openQCM. https://openqcm.com/scientific-papers/a-novel-exposure-system-termed-navetta-for-in-vitro-laminar-flow-electrodeposition-of-nanoaerosol-and-evaluation-of-immune-effects-in-human-lung-reporter-cells
- A Novel Peptide-Based Detection of SARS-CoV-2 Antibodies — Aliye Bulut, Betul Z Temur, Ceyhun E Kirimli et al., *Biomimetics* (2023). DOI: 10.3390/biomimetics8010089. Instrument: openQCM. https://openqcm.com/scientific-papers/a-novel-peptide-based-detection-of-sars-cov-2-antibodies
- A Novel Physical Investigation of Salt Interactions with Lipid Membranes — Charlotte Byford, *Kent Academic Repository (University of Kent)* (2022). DOI: 10.22024/UniKent/01.02.97260. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/a-novel-physical-investigation-of-salt-interactions-with-lipid-membranes
- A point-of-care immunosensor based on a quartz crystal microbalance with graphene biointerface for antibody assay — Piramon Hampitak, Thomas A Jowitt, Daniel Melendrez et al., *ACS sensors* (2020). DOI: 10.1021/acssensors.0c01641. Instrument: openQCM 1. https://openqcm.com/scientific-papers/a-point-of-care-immunosensor-based-on-a-quartz-crystal-microbalance-with-graphene-biointerface-for-antibody-assay
- A polyaniline-enhanced quartz crystal microbalance sensor for room-temperature camphor detection — Rizky Aflaha, Muammar Romiz Dzaki, Laila Katriani et al., *Anal. Methods* (2024). DOI: 10.1039/D4AY01859A. Instrument: openQCM. https://openqcm.com/scientific-papers/a-polyaniline-enhanced-quartz-crystal-microbalance-sensor-for-room-temperature-camphor-detection
- A Portable QCM-Based Biosensor-Incorporated Graphene Oxide for Point-of-Care Prostate Cancer Marker Detection — Suparat Tongpeng, Chayapat Weerapakdee, Thita Sonklin et al., *Technologies* (2025). DOI: 10.3390/technologies13120544. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-portable-qcm-based-biosensor-incorporated-graphene-oxide-for-point-of-care-prostate-cancer-marker-detection
- A QCM-based assay of drug content in Eudragit RS 100-based delivery systems — Iliyan N Kolev, Nadezhda А Ivanova, Michael K Marinov et al., *Talanta* (2019). DOI: 10.1016/j.talanta.2019.05.033. Instrument: openQCM. https://openqcm.com/scientific-papers/a-qcm-based-assay-of-drug-content-in-eudragit-rs-100-based-delivery-systems
- A QCM-Based Device for Neurodegenerative Diseases Detection in Human Perspiration — Ada Fort, Elia Landi, Riccardo Moretti et al., *IEEE MetroInd4.0&IoT 2024* (2024). DOI: 10.1109/metroind4.0iot61288.2024.10584186. Instrument: openQCM. https://openqcm.com/scientific-papers/a-qcm-based-device-for-neurodegenerative-diseases-detection-in-human-perspiration
- A quartz crystal microbalance biosensor based on polyethylenimine-modified gold electrode to detect hepatitis B biomarker — Zahra Saffari, Mina Sepahi, Reza Ahangari-Cohan et al., *Analytical Biochemistry* (2022). DOI: 10.1016/j.ab.2022.114981. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-quartz-crystal-microbalance-biosensor-based-on-polyethylenimine-modified-gold-electrode-to-detect-hepatitis-b-biomarker
- A quartz crystal microbalance immunosensor for stem cell selection and extraction — Ornella Maglio, Salvatore Costanzo, Rosaria Cercola et al., *Sensors* (2017). DOI: 10.3390/s17122747. Instrument: openQCM 1. https://openqcm.com/scientific-papers/a-quartz-crystal-microbalance-immunosensor-for-stem-cell-selection-and-extraction
- A Quartz Crystal Resonator Modified with a Metal-Organic Framework for Sensing of Benzene, Ethylbenzene, Toluene and Xylenes in Water — Jaskaran Singh Malhotra, Per Holger Reichert, Jonas Sundberg, *2023 IEEE SENSORS* (2023). DOI: 10.1109/SENSORS56945.2023.10325196. Instrument: openQCM. https://openqcm.com/scientific-papers/a-quartz-crystal-resonator-modified-with-a-metal-organic-framework-for-sensing-of-benzene-ethylbenzene-toluene-and-xylenes-in-water
- A reusable QCM biosensor with stable antifouling nano-coating for on-site reagent-free rapid detection of E. coli O157:H7 in food products — Michala Forinová, Alina Pilipenco, N. Scott Lynn et al., *Food Control* (2024). DOI: 10.1016/j.foodcont.2024.110695. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/a-reusable-qcm-biosensor-with-stable-antifouling-nano-coating-for-on-site-reagent-free-rapid-detection-of-e-coli-o157h7-in-food-products
- A simple and flexible model for laser-driven antibody – gold surface interactions: functionalization and sensing — Bartolomeo Della Ventura, Antonio Ambrosio, Annalisa Fierro et al., *ACS Applied Materials & Interfaces* (2016). DOI: 10.1021/acsami.6b04449. Instrument: openQCM 1. https://openqcm.com/scientific-papers/a-simple-and-flexible-model-for-laser-driven-antibody-gold-surface-interactions-functionalization-and-sensing
- A study of quartz crystal microbalance modified with polyvinyl acetate nanofiber to differentiate short-chain alcohol isomers — Aditya Rianjanu, Doni B Nugroho, Ahmad Kusumaatmaja et al., *Sensing and Bio-Sensing Research* (2019). DOI: 10.1016/j.sbsr.2019.100294. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/a-study-of-quartz-crystal-microbalance-modified-with-polyvinyl-acetate-nanofiber-to-differentiate-short-chain-alcohol-isomers
- A versatile gas transmission device with precise humidity control for QCM humidity sensor characterizations — Andrzej Biadasz, Michał Kotkowiak, Damian Łukawski et al., *Measurement* (2022). DOI: 10.1016/j.measurement.2022.111674. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/a-versatile-gas-transmission-device-with-precise-humidity-control-for-qcm-humidity-sensor-characterizations
- Accurate Stereo-Vision-Based Flying Droplet Volume Measurement Method — Qiangqiang Liu, Jiankui Chen, Hua Yang et al., *IEEE Transactions on Instrumentation and Measurement* (2021). DOI: 10.1109/tim.2021.3129216. Instrument: openQCM. https://openqcm.com/scientific-papers/accurate-stereo-vision-based-flying-droplet-volume-measurement-method
- Acid-Doped Hydrogel Electrolytes for Electrocatalyst Interfaces — Adlai Katzenberg, Cesar Muñoz Davila, Brian Chen et al., *ACS Applied Polymer Materials* (2020). DOI: 10.1021/acsapm.0c00214. Instrument: openQCM. https://openqcm.com/scientific-papers/acid-doped-hydrogel-electrolytes-for-electrocatalyst-interfaces
- Acoustic Fingerprinting and Nanoslip Dynamics of Biofilms — Saikat Jana, Nikhil Bhalla, *Advanced Functional Materials* (2024). DOI: 10.1002/adfm.202414687. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/acoustic-fingerprinting-and-nanoslip-dynamics-of-biofilms
- Adsorption hierarchy of surfactants and polymers to a damaged hair model: effect of composition, order and polymer size — Serena Cozzolino, Philipp Gutfreund, Alexeï Vorobiev et al., *Physical Chemistry Chemical Physics* (2024). DOI: 10.1039/d4cp03603d. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/adsorption-hierarchy-of-surfactants-and-polymers-to-a-damaged-hair-model-effect-of-composition-order-and-polymer-size
- Advanced vapour sensing materials: Existing and latent to acoustic wave sensors for VOCs detection as the potential exhaled breath biomarkers for lung cancer — Nurul Liyana Lukman Hekiem, Aliza Aini Md Ralib, Farah B Ahmad et al., *Sensors and Actuators A: Physical* (2021). DOI: 10.1016/j.sna.2021.112792. Instrument: openQCM. https://openqcm.com/scientific-papers/advanced-vapour-sensing-materials-existing-and-latent-to-acoustic-wave-sensors-for-vocs-detection-as-the-potential-exhaled-breath-biomarkers-for-lung-cancer
- Advancing Label Free Detection Techniques Through Surface Based Sensing and Machine Learning — Daniel David Stuart (2023). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/advancing-label-free-detection-techniques-through-surface-based-sensing-and-machine-learning
- Aerosol hygroscopicity and photodegradation in the polluted Indo-Gangetic Plain compared with the clean Himalayas examined using a quartz crystal microbalance — Srivasthava Shailina, Aishwarya Singh, Tariq Ahmed et al., *Research Square* (2026). DOI: 10.21203/rs.3.rs-10937819/v1. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/aerosol-hygroscopicity-and-photodegradation-in-the-polluted-indo-gangetic-plain-compared-with-the-clean-himalayas-examined-using-a-quartz-crystal-microbalance
- Affinity Recognition Based Gravimetric Nanosensor for Equilin Detection — Gülgün Aylaz, Müge Andaç, *Chemosensors* (2022). DOI: 10.3390/chemosensors10050172. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/affinity-recognition-based-gravimetric-nanosensor-for-equilin-detection
- Affordable Open-Source Quartz Microbalance Platform for Measuring the Layer Thickness — Adrian Matusiak, Andrzej Marek .Zak, *Sensors* (2022). DOI: 10.3390/s22176422. Instrument: openQCM 1. https://openqcm.com/scientific-papers/affordable-open-source-quartz-microbalance-platform-for-measuring-the-layer-thickness
- Airborne emissions from combustion of graphene nanoplatelet/epoxy composites and their cytotoxicity on lung cells via air-liquid interface cell exposure in vitro — Woranan Netkueakul, Savvina Chortarea, Kornphimol Kulthong et al., *NanoImpact* (2022). DOI: 10.1016/j.impact.2022.100414. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/airborne-emissions-from-combustion-of-graphene-nanoplatelet-epoxy-composites-and-their-cytotoxicity-on-lung-cells-via-air-liquid-interface-cell-exposure-in-vitro
- An approach to compare performance of surgical masks for fighting against the COVID-19 pandemic — Ümit Çelik, Haluk Eren, *Aerosol Science and Technology* (2022). DOI: 10.1080/02786826.2022.2039589. Instrument: openQCM. https://openqcm.com/scientific-papers/an-approach-to-compare-performance-of-surgical-masks-for-fighting-against-the-covid-19-pandemic
- An electrochemical aptasensor for detection of prostate-specific antigen using reduced graphene gold nanocomposite and Cu/carbon quantum dots — Golnaz Mehdipour, Javad Shabani Shayeh, Meysam Omidi et al., *Biotechnology and Applied Biochemistry* (2022). DOI: 10.1002/bab.2271. Instrument: openQCM. https://openqcm.com/scientific-papers/an-electrochemical-aptasensor-for-detection-of-prostate-specific-antigen-using-reduced-graphene-gold-nanocomposite-and-cu-carbon-quantum-dots
- An enhanced safrole sensing performance of a polyacrylonitrile nanofiber-based-QCM sensor by overlaying with chitosan — ADITYA Rianjanu, Kuwat Triyana, NOVALIA Nurbaiti et al., *Sains Malaysiana* (2019). DOI: 10.17576/jsm-2019-4809-25. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/an-enhanced-safrole-sensing-performance-of-a-polyacrylonitrile-nanofiber-based-qcm-sensor-by-overlaying-with-chitosan
- An investigation of the influence of nanofibers morphology on the performance of QCM-based ethanol vapor sensor utilizing polyvinylpyrrolidone nanofibers active layer — Riris Sukowati, Yadi Mulyadi Rohman, Bertolomeus Haryanto Agung et al., *Sensors and Actuators B: Chemical* (2023). DOI: 10.1016/j.snb.2023.133708. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/an-investigation-of-the-influence-of-nanofibers-morphology-on-the-performance-of-qcm-based-ethanol-vapor-sensor-utilizing-polyvinylpyrrolidone-nanofibers-active-layer
- Aplicação de imunossensor piezoelétrico para identifição de anticorpos contra Leishmania infantum em soro felino — Joseane Rodrigues Monteiro (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/aplicacao-de-imunossensor-piezoeletrico-para-identificao-de-anticorpos-contra-leishmania-infantum-em-soro-felino
- Aptamer-Based Quartz Crystal Microbalance Biosensor for Histamine — George Rabacal, Lyam Estipona, Dharmatov Rahula B. Albano, *Acta Manilana* (2025). DOI: 10.53603/actamanil.73.2025.bsdk9365. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/aptamer-based-quartz-crystal-microbalance-biosensor-for-histamine
- Aptamer-molecularly imprinted polymer sensors for the detection of bacteria in water — Meltem Agar, Maisem Laabei, Hannah S. Leese et al., *Biosensors and Bioelectronics* (2025). DOI: 10.1016/j.bios.2025.117136. Instrument: openQCM. https://openqcm.com/scientific-papers/aptamer-molecularly-imprinted-polymer-sensors-for-the-detection-of-bacteria-in-water
- Area-Selective Growth of HfS2 Thin Films via Atomic Layer Deposition at Low Temperature Yuanyuan Cao, Tobias Wähler, Hyoungwon Park, Johannes Will, Annemarie Prihoda, Narine Moses Badlyan, Lukas — Tadahiro Yokosawa Fromm, Bingzhe Wang, Dirk M Guldi et al., *Atomic Layer Deposition of Transition Metal Dichalcogenides and Applications in Water Splitting* (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/area-selective-growth-of-hfs2-thin-films-via-atomic-layer-deposition-at-low-temperature-yuanyuan-cao-tobias-wahler-hyoungwon-park-johannes-will-annemarie-prihoda-narine-moses-badlyan-lukas
- Arginine-Functional Methacrylic Block Copolymer Nanoparticles: Synthesis, Characterization, and Adsorption onto a Model Planar Substrate — Hubert Buksa, Edwin C Johnson, Derek HH Chan et al., *Biomacromolecules* (2024). DOI: 10.1021/acs.biomac.4c00128?goto=supporting-info. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/arginine-functional-methacrylic-block-copolymer-nanoparticles-synthesis-characterization-and-adsorption-onto-a-model-planar-substrate
- Assessing and predicting sustainability for maintaining silver collections — David Thickett, Paul Lankester, Marianne Odlyha, *ICOM-CC 20th Triennial Conference Preprints, Valencia* (2023). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/assessing-and-predicting-sustainability-for-maintaining-silver-collections
- Atomic Layer Deposition of Transition Metal Dichalcogenides and Applications in Water Splitting — Yuanyuan Cao, *Friedrich-Alexander-Universität Erlangen-Nürnberg* (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/atomic-layer-deposition-of-transition-metal-dichalcogenides-and-applications-in-water-splitting
- Automating Data Analysis for Point-of-Care Label-Free Surface-Based Affinity Biosensors Dealing with Complex Biological Samples: Escherichia Coli O157: H7 and Sars-Cov-2 Case Studies — Jakub Kunčák, Michala Forinová, Alina Pilipenco et al., *Available at SSRN 4756321* (2024). DOI: 10.2139/ssrn.4756321. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/automating-data-analysis-for-point-of-care-label-free-surface-based-affinity-biosensors-dealing-with-complex-biological-samples-escherichia-coli-o157-h7-and-sars-cov-2-case-studies
- Automating data classification for label-free point-of-care biosensing in real complex samples — Jakub Kunčák, Michala Forinová, Alina Pilipenco et al., *Sensors and Actuators A: Physical* (2024). DOI: 10.1016/j.sna.2024.115501. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/automating-data-classification-for-label-free-point-of-care-biosensing-in-real-complex-samples
- Bandgap engineered II–VI quaternary alloys and their humidity sensing performance analyzed by QCM — Sunay Turkdogan, *Journal of Materials Science: Materials in Electronics* (2019). DOI: 10.1007/s10854-019-01384-z. Instrument: openQCM 1. https://openqcm.com/scientific-papers/bandgap-engineered-ii-vi-quaternary-alloys-and-their-humidity-sensing-performance-analyzed-by-qcm
- Bioaktív komponensek kölcsönhatásának vizsgálata QCM módszerrel — Miklós Katona, *ELTE Digital Institutional Repository (EDIT) (Eötvös Loránd University)* (2016). Instrument: openQCM 1. https://openqcm.com/scientific-papers/bioaktiv-komponensek-kolcsonhatasanak-vizsgalata-qcm-modszerrel
- Biosensor design utilizing particle-bound enzymes — Cassi Joanna Henderson, *Apollo (University of Cambridge)* (2020). DOI: 10.17863/cam.44912. Instrument: openQCM. https://openqcm.com/scientific-papers/biosensor-design-utilizing-particle-bound-enzymes
- Biosensor for rapid detection of SARS-CoV-2 in real-world samples — Michala Forinová, Alina Pilipenco, Ivana Víšová et al., *2021 IEEE Sensors* (2021). DOI: 10.1109/sensors47087.2021.9639783. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/biosensor-for-rapid-detection-of-sars-cov-2-in-real-world-samples
- Block Copolymers-Based Nanoporous Thin Films with Tailored Morphology for Biomolecules Adsorption — Anna Malafronte, Finizia Auriemma, Chiara Santillo et al., *Advanced Materials Interfaces* (2020). DOI: 10.1002/admi.201901580. Instrument: openQCM 1. https://openqcm.com/scientific-papers/block-copolymers-based-nanoporous-thin-films-with-tailored-morphology-for-biomolecules-adsorption
- Capturing Enzyme-Loaded Diblock Copolymer Vesicles Using an Aldehyde-Functionalized Hydrophilic Polymer Brush — Georgios Karchilakis, Spyridon Varlas, Edwin C Johnson et al., *Langmuir* (2024). DOI: 10.1021/acs.langmuir.4c01561. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/capturing-enzyme-loaded-diblock-copolymer-vesicles-using-an-aldehyde-functionalized-hydrophilic-polymer-brush
- CARBON NANOTUBE-CHITOSAN THIN FILM ON QCM (QUARTZ CRYSTAL MICROBALANCE) FOR DETECTION OF IPA (ISOPROPYL ALCOHOL) — Aisyah Shafiqah Mahadi, Mohd Asyraf Mohd Razib, Aliza Aini Md Ralib et al., *Chemical and Natural Resources Engineering Journal (Formally known as Biological and Natural Resources Engineering Journal)* (2025). DOI: 10.31436/cnrej.v9i2.123. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/carbon-nanotube-chitosan-thin-film-on-qcm-quartz-crystal-microbalance-for-detection-of-ipa-isopropyl-alcohol
- Chapter 8 – Research on mechanism and measurement technology of frost formation of micro water frosting — Xiaoqin Zhi, Yinghe Qi, Wenhan Shu et al., *Frosting and Icing for Efficient Energy Use in Engineering Applications* (2025). DOI: 10.1016/B978-0-443-15495-9.00009-5. Instrument: openQCM. https://openqcm.com/scientific-papers/chapter-8-research-on-mechanism-and-measurement-technology-of-frost-formation-of-micro-water-frosting
- Characterization of QCM-based sensors with dissipation using Polyethylene Glycol — Christian Mista, Martín Zalazar, Natalia Díaz Molina et al. (2017). Instrument: openQCM 1. https://openqcm.com/scientific-papers/characterization-of-qcm-based-sensors-with-dissipation-using-polyethylene-glycol
- Chemically routed interpore molecular diffusion in metal-organic framework thin films — Tanmoy Maity, Pratibha Malik, Sumit Bawari et al., *Nature Communications* (2023). DOI: 10.1038/s41467-023-37739-8. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/chemically-routed-interpore-molecular-diffusion-in-metal-organic-framework-thin-films
- Chemically routed interpore molecular diffusion in nanoporous thin films — Tanmoy Maity, Pratibha Malik, Sumit Bawari et al., *Research Square* (2022). DOI: 10.21203/rs.3.rs-2246266/v1. Instrument: openQCM. https://openqcm.com/scientific-papers/chemically-routed-interpore-molecular-diffusion-in-nanoporous-thin-films
- Chitosan Coating on Quartz Crystal Microbalance Gas Sensor for Isopropyl Alcohol and Acetone Detection — Nurul Liyana Lukman Hekiem, Aliza Aini Md Ralib, MH Maziati Akmal et al., *International Journal of Integrated Engineering* (2022). DOI: 10.30880/ijie.2022.14.03.026. Instrument: openQCM 1. https://openqcm.com/scientific-papers/chitosan-coating-on-quartz-crystal-microbalance-gas-sensor-for-isopropyl-alcohol-and-acetone-detection
- Chitosan-based quartz crystal microbalance for alcohol sensing — Kuwat Triyana, Agustinus Sembiring, Aditya Rianjanu et al., *Electronics* (2018). DOI: 10.3390/electronics7090181. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/chitosan-based-quartz-crystal-microbalance-for-alcohol-sensing
- Chitosan/Sn@C composite nanofiber coatings for QCM-based humidity sensing — Jialin Liu, Dongzi Zhou, Zitong Wang et al., *Colloids and Surfaces A Physicochemical and Engineering Aspects* (2026). DOI: 10.1016/j.colsurfa.2026.141109. Instrument: openQCM. https://openqcm.com/scientific-papers/chitosan-snc-composite-nanofiber-coatings-for-qcm-based-humidity-sensing
- Coating-based quartz crystal microbalance detection methods of environmentally relevant volatile organic compounds — Rocío L Pérez, Caitlan E Ayala, Jong-Yoon Park et al., *Chemosensors* (2021). DOI: 10.3390/chemosensors9070153. Instrument: openQCM. https://openqcm.com/scientific-papers/coating-based-quartz-crystal-microbalance-detection-methods-of-environmentally-relevant-volatile-organic-compounds
- Çok kanalli bir kuartz kristal mikrobalans veri toplama sisteminin geliştirilmesi — Mustafa Karapinar (2017). Instrument: openQCM. https://openqcm.com/scientific-papers/cok-kanalli-bir-kuartz-kristal-mikrobalans-veri-toplama-sisteminin-gelistirilmesi
- Computationally Designed Epitope-Mediated Imprinted Polymers versus Conventional Epitope Imprints for the Detection of Human Adenovirus in Water and Human Serum Samples — Ekin Sehit, Guiyang Yao, Giovanni Battocchio et al., *ACS sensors* (2024). DOI: 10.1021/acssensors.3c02374. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/computationally-designed-epitope-mediated-imprinted-polymers-versus-conventional-epitope-imprints-for-the-detection-of-human-adenovirus-in-water-and-human-serum-samples
- Construção de uma microbalança de cristal de quartzo prototificada para análise bioativa e gravimétrica — Gilson Tavares Lima (2020). Instrument: openQCM 1. https://openqcm.com/scientific-papers/construcao-de-uma-microbalanca-de-cristal-de-quartzo-prototificada-para-analise-bioativa-e-gravimetrica
- Controlling Adsorption of Diblock Copolymer Nanoparticles onto an Aldehyde-Functionalized Hydrophilic Polymer Brush via pH Modulation — Samuel Astier, Edwin C Johnson, Oleta Norvilaite et al., *Langmuir* (2024). DOI: 10.1021/acs.langmuir.3c03392. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/controlling-adsorption-of-diblock-copolymer-nanoparticles-onto-an-aldehyde-functionalized-hydrophilic-polymer-brush-via-ph-modulation
- Controlling Protein Immobilization over Poly(3-hydroxybutyrate) Microparticles Using Substrate Binding Domain from PHA Depolymerase — Isabela P. Dias, Regiane Stafim Cunha, Ryu Masaki et al., *Biomacromolecules* (2025). DOI: 10.1021/acs.biomac.5c00010. Instrument: openQCM 1. https://openqcm.com/scientific-papers/controlling-protein-immobilization-over-poly3-hydroxybutyrate-microparticles-using-substrate-binding-domain-from-pha-depolymerase
- Conventional and point-of-care diagnostic tools for dengue virus detection and their possible treatments — Benson, *Zenodo (CERN European Organization for Nuclear Research)* (2021). DOI: 10.5281/zenodo.5700510. Instrument: openQCM. https://openqcm.com/scientific-papers/conventional-and-point-of-care-diagnostic-tools-for-dengue-virus-detection-and-their-possible-treatments
- Covalent Capture of Nanoparticle-Stabilized Oil Droplets via Acetal Chemistry Using a Hydrophilic Polymer Brush — Saul J Hunter, Evelin Csányi, Joshua JS Tyler et al., *Langmuir* (2024). DOI: 10.1021/acs.langmuir.4c03897. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/covalent-capture-of-nanoparticle-stabilized-oil-droplets-via-acetal-chemistry-using-a-hydrophilic-polymer-brush
- Dataset for — George Neville, Ana-Maria Dobre, Gavin Smith et al., *Pure (University of Bath)* (2023). DOI: 10.15125/BATH-01289. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/dataset-for
- Degradation kinetics of medium chain length Polyhydroxyalkanoate degrading enzyme: a quartz crystal microbalance study — Fabien Millan, Nils Hanik, *Frontiers in Bioengineering and Biotechnology* (2023). DOI: 10.3389/fbioe.2023.1303267. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/degradation-kinetics-of-medium-chain-length-polyhydroxyalkanoate-degrading-enzyme-a-quartz-crystal-microbalance-study
- Derisking the Finance of Open Source Hardware Development — Joshua Pearce, *Preprints* (2025). DOI: 10.20944/preprints202512.1788.v1. Instrument: openQCM. https://openqcm.com/scientific-papers/derisking-the-finance-of-open-source-hardware-development
- Desenvolvimento de uma Microbalança de Cristal de Quartzo–MCQ experimental como ferramenta para o ensino de física moderna — Gilson Tavares Lima, Poliana Guerino Marson, Helcileia Dias Santos, *Revista Brasileira de Ensino de Física* (2021). DOI: 10.1590/1806-9126-rbef-2021-0153. Instrument: openQCM 1. https://openqcm.com/scientific-papers/desenvolvimento-de-uma-microbalanca-de-cristal-de-quartzo-mcq-experimental-como-ferramenta-para-o-ensino-de-fisica-moderna
- Design and validation of a low-cost open-source impedance based quartz crystal microbalance for electrochemical research — Rens J. Horst, Antonis Katzourakis, Bastian T. Mei et al., *HardwareX* (2022). DOI: 10.1016/j.ohx.2022.e00374. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/design-and-validation-of-a-low-cost-open-source-impedance-based-quartz-crystal-microbalance-for-electrochemical-research
- Design of polymer-based CO2-membrane adsorbers for carbon capture — Emil Pashayev, Prokopios Georgopanos, *Materials Horizons* (2026). DOI: 10.1039/d6mh00641h. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/design-of-polymer-based-co2-membrane-adsorbers-for-carbon-capture
- Detecting Escherichia coli biofilm development stages on gold and titanium by quartz crystal microbalance — Rosa Ripa, Amy Q Shen, Riccardo Funari, *ACS omega* (2020). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/detecting-escherichia-coli-biofilm-development-stages-on-gold-and-titanium-by-quartz-crystal-microbalance
- Detecting gold biomineralization by delftia acidovorans biofilms on a quartz crystal microbalance — Riccardo Funari, Rosa Ripa, Bill Söderström et al., *ACS sensors* (2019). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/detecting-gold-biomineralization-by-delftia-acidovorans-biofilms-on-a-quartz-crystal-microbalance
- Detection and confirmation of Salmonella Typhimurium by smartphone-enabled optomechanical platform — Hyun Jung Min, Hansel A. Mina, Sungho Shin et al., *Sensing for Agriculture and Food Quality and Safety XVI* (2024). DOI: 10.1117/12.3016099. Instrument: openQCM. https://openqcm.com/scientific-papers/detection-and-confirmation-of-salmonella-typhimurium-by-smartphone-enabled-optomechanical-platform
- Detection of Pesticides in Complex Matrices Using QCM-Based Piezoelectric Immunosensors — Franco Antonio Arauz-García, Juan José Manclús-Ciscar, David Andrés Fernández-Benavides, *Artículos del Congreso Internacional de Investigación Academia Journals Chiapas 2025* (2025). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/detection-of-pesticides-in-complex-matrices-using-qcm-based-piezoelectric-immunosensors
- Detection of sub-micro-and nanoplastic particles on gold nanoparticle-based substrates through surface-enhanced raman scattering (Sers) spectroscopy — Jessica Caldwell, Patricia Taladriz-Blanco, Barbara Rothen-Rutishauser et al., *Nanomaterials* (2021). DOI: 10.3390/nano11051149. Instrument: openQCM 1. https://openqcm.com/scientific-papers/detection-of-sub-micro-and-nanoplastic-particles-on-gold-nanoparticle-based-substrates-through-surface-enhanced-raman-scattering-sers-spectroscopy
- Determination of Both Wet and Dry Mass of Water-Soluble Polymers Adsorbed on Planar Silica Using a Quartz Crystal Microbalance — A. P. Berisha, O. O. Mykhaylyk, S. P. Armes et al., *Langmuir* (2025). DOI: 10.1021/acs.langmuir.5c01380. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/determination-of-both-wet-and-dry-mass-of-water-soluble-polymers-adsorbed-on-planar-silica-using-a-quartz-crystal-microbalance
- Determination of electric and thermoelectric properties of molecular junctions by AFM in peak force tapping mode — Xinati Wang, Angelo Lamantia, Michael Jay et al., *Nanotechnology* (2023). DOI: 10.1088/1361-6528/acdf67. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/determination-of-electric-and-thermoelectric-properties-of-molecular-junctions-by-afm-in-peak-force-tapping-mode
- Determination of long-chain aldehydes using a novel quartz crystal microbalance sensor based on a biomimetic peptide — Tomasz Wasilewski, Bartosz Szulczyński, Marek Wojciechowski et al., *Microchemical Journal* (2020). DOI: 10.1016/j.microc.2019.104509. Instrument: openQCM. https://openqcm.com/scientific-papers/determination-of-long-chain-aldehydes-using-a-novel-quartz-crystal-microbalance-sensor-based-on-a-biomimetic-peptide
- Developing a Reusable Aptamer-Based Biosensor for Interleukin-6 with a Quartz Crystal Microbalance — Bennett Sasaki (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/developing-a-reusable-aptamer-based-biosensor-for-interleukin-6-with-a-quartz-crystal-microbalance
- Development and Assessment of Regeneration Methods for Peptide-Based QCM Biosensors in VOCs Analysis Applications — Tomasz Wasilewski, Bartosz Szulczyński, Dominik Dobrzyniewski et al., *Biosensors* (2022). DOI: 10.3390/bios12050309. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/development-and-assessment-of-regeneration-methods-for-peptide-based-qcm-biosensors-in-vocs-analysis-applications
- Development of a Low-Cost, Open-Source Quartz Crystal Microbalance with Dissipation Monitoring for Potential Biomedical Applications — Gabriel G. Muñoz, Martín J. Millicovsky, Albano Peñalva et al., *Hardware* (2026). DOI: 10.3390/hardware4010004. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/development-of-a-low-cost-open-source-quartz-crystal-microbalance-with-dissipation-monitoring-for-potential-biomedical-applications
- Development of a method for measuring aerosol concentration with oscillating microbalance — Michał Adam Sidorski (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-a-method-for-measuring-aerosol-concentration-with-oscillating-microbalance
- Development of a Piezoelectric Biosensor for Disease Diagnosis — Martín Zalazar, *Ciencia, Docencia y Tecnología – Suplemento (Universidad Nacional de Entre Ríos)* (2019). Instrument: openQCM 1. https://openqcm.com/scientific-papers/development-of-a-piezoelectric-biosensor-for-disease-diagnosis
- Development of a Piezoelectric Sensor for Gas Detection Using a Silver(I) Coordination Polymer — Bárbara Richter, *Universidade Tecnológica Federal do Paraná* (2022). Instrument: openQCM 1. https://openqcm.com/scientific-papers/development-of-a-piezoelectric-sensor-for-gas-detection-using-a-silveri-coordination-polymer
- Development of a QCM-based biosensor for the detection of non-small cell lung cancer biomarkers in liquid biopsies — Catarina Lino, Sara Barrias, Raquel Chaves et al., *Talanta* (2023). DOI: 10.1016/j.talanta.2023.124624. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/development-of-a-qcm-based-biosensor-for-the-detection-of-non-small-cell-lung-cancer-biomarkers-in-liquid-biopsies
- Development of a quartz crystal microbalance biodetector based on cellulose nanofibrils (CNFs) for glycine — MS Hosseini, M Vossoughi, A Kalantarian et al., *Journal of Materials Science: Materials in Electronics* (2020). DOI: 10.1007/s10854-020-04301-x. Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-a-quartz-crystal-microbalance-biodetector-based-on-cellulose-nanofibrils-cnfs-for-glycine
- Development of Aminated Chitosan-Functionalized Magnetite Nanoparticles Enriched with Zinc Phthalocyanine: Detailed Photophysical and Model Cell Membrane Studies — Emilia Piosik, Michał Kotkowiak, Anna Modlińska et al., *The Journal of Physical Chemistry C* (2022). DOI: 10.1021/acs.jpcc.2c04758. Instrument: openQCM 1. https://openqcm.com/scientific-papers/development-of-aminated-chitosan-functionalized-magnetite-nanoparticles-enriched-with-zinc-phthalocyanine-detailed-photophysical-and-model-cell-membrane-studies
- Development of an Electronic Circuit for a Quartz Crystal Microbalance — Dário José Costa Junior, Jaime Francisco Ribeiro Hamann, Lucas Akio Yoshioka, *Universidade Tecnológica Federal do Paraná* (2022). Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/development-of-an-electronic-circuit-for-a-quartz-crystal-microbalance
- Development of an Experimental Quartz Crystal Microbalance–MCQ as a tool for teaching modern physics — Gilson Tavares Lima, Poliana Guerino Marson, Helcileia Dias Santos, *Revista Brasileira de Ensino de Física* (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-an-experimental-quartz-crystal-microbalance-mcq-as-a-tool-for-teaching-modern-physics
- Development of an open-source thermally stabilized quartz crystal microbalance instrument for biomolecule-substrate binding assays on gold and graphene — Daniel Melendrez, Piramon Hampitak, Thomas Jowitt et al., *Analytica Chimica Acta* (2021). DOI: 10.1016/j.aca.2021.338329. Instrument: openQCM 1. https://openqcm.com/scientific-papers/development-of-an-open-source-thermally-stabilized-quartz-crystal-microbalance-instrument-for-biomolecule-substrate-binding-assays-on-gold-and-graphene
- Development of Aptamer-Based Non-labeling Methods — Huajie Gu, Liling Hao, Zhouping Wang, *Aptamers for Analytical Applications: Affinity Acquisition and Method Design* (2018). DOI: 10.1002/9783527806799.ch11. Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-aptamer-based-non-labeling-methods
- Development of gold nanospikes-modified quartz crystal microbalance biosensor for prostate specific antigen detection — Thita Sonklin, Suparat Tongpeng, Dhananjaya Munthala et al., *Surfaces and Interfaces* (2024). DOI: 10.1016/j.surfin.2024.103877. Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-gold-nanospikes-modified-quartz-crystal-microbalance-biosensor-for-prostate-specific-antigen-detection
- Development of Integrated Electrochemical-Quartz Crystal Microbalance Biosensor Arrays: Towards Ultrasensitive, Multiplexed and Rapid Point-of-Care Dengue Detection. — Ahmad Anwar Zainuddin, Anis Nurashikin Nordin, Mohd Afiq Mohd Asri et al., *BioDevices* (2019). Instrument: openQCM 1. https://openqcm.com/scientific-papers/development-of-integrated-electrochemical-quartz-crystal-microbalance-biosensor-arrays-towards-ultrasensitive-multiplexed-and-rapid-point-of-care-dengue-detection
- Development of Poly (safranine-co-phenosafranine)/GNPs/MWCNTs Nanocomposites for Quartz Crystal Microbalance Sensor Detection of Arsenic (III) Ions — Salsabeel Al-Sodies, Abdullah M Asiri, Sameh Ismail et al., *Materials Research Express* (2024). DOI: 10.1088/2053-1591/ad37a5/meta. Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-poly-safranine-co-phenosafranine-gnps-mwcnts-nanocomposites-for-quartz-crystal-microbalance-sensor-detection-of-arsenic-iii-ions
- Development of quartz crystal microbalance based sensor for real-time ozone monitoring — M Guillemot, C Ravera, B Castel, *2019 IEEE International Symposium on Olfaction and Electronic Nose (ISOEN)* (2019). DOI: 10.1109/isoen.2019.8823424. Instrument: openQCM. https://openqcm.com/scientific-papers/development-of-quartz-crystal-microbalance-based-sensor-for-real-time-ozone-monitoring
- Développement d’un capteur spectrophotométrique pour la mesure en temps réel des expositions professionnelles à l’ozone — Christelle Ghazaly (2019). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/developpement-dun-capteur-spectrophotometrique-pour-la-mesure-en-temps-reel-des-expositions-professionnelles-a-lozone
- Diagnostics of caesium emission from SPIDER caesium oven prototype — E Sartori, M Barbisan, M Fadone et al., *AIP Conference Proceedings* (2018). DOI: 10.1063/1.5083745. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/diagnostics-of-caesium-emission-from-spider-caesium-oven-prototype
- Direct and controlled device integration of graphene oxide on Quartz Crystal Microbalance via electrospray deposition for stable humidity sensing — Il Ryu Jang, Soon In Jung, Jeonhyeong Park et al., *Ceramics International* (2022). DOI: 10.1016/j.ceramint.2021.11.347. Instrument: openQCM. https://openqcm.com/scientific-papers/direct-and-controlled-device-integration-of-graphene-oxide-on-quartz-crystal-microbalance-via-electrospray-deposition-for-stable-humidity-sensing
- Direct and rapid detection of 5-hydroxymethylcytosine, a novel cancer hallmark in DNA, using electrochemical reaction — Seo Yeon Lee, Xue Qi, Myunggon Ko et al., *Materials Today Communications* (2020). Instrument: openQCM. https://openqcm.com/scientific-papers/direct-and-rapid-detection-of-5-hydroxymethylcytosine-a-novel-cancer-hallmark-in-dna-using-electrochemical-reaction
- Drug-loaded nanoparticles for intra-articular injection — Piaopiao Pan, Konstantina Simou, Yanting Ouyang et al., *PLOS ONE* (2026). DOI: 10.1371/journal.pone.0327958. Instrument: openQCM 1. https://openqcm.com/scientific-papers/drug-loaded-nanoparticles-for-intra-articular-injection
- Effect of Added Salt and Hydrophobic Comonomer on the Synthesis and Adsorption Behavior of Cationic Sterically-Stabilized Nanoparticles — Hubert Buksa, Andi Xie, Derek HH Chan et al., *Langmuir* (2025). DOI: 10.1021/acs.langmuir.5c02575. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/effect-of-added-salt-and-hydrophobic-comonomer-on-the-synthesis-and-adsorption-behavior-of-cationic-sterically-stabilized-nanoparticles
- Effect of aminated chitosan-coated Fe3O4 nanoparticles with applicational potential in nanomedicine on DPPG, DSPC, and POPC Langmuir monolayers as cell membrane models — Emilia Piosik, Marta Ziegler-Borowska, Dorota Chełminiak-Dudkiewicz et al., *International Journal of Molecular Sciences* (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/effect-of-aminated-chitosan-coated-fe3o4-nanoparticles-with-applicational-potential-in-nanomedicine-on-dppg-dspc-and-popc-langmuir-monolayers-as-cell-membrane-models
- Effect of chitosan dissolved in different acetic acid concentration towards VOC sensing performance of quartz crystal microbalance overlay with chitosan — Nurul Liyana Lukman Hekiem, Aliza Aini Md Ralib, Maziati Akmal Mohd Hatta et al., *Materials Letters* (2021). DOI: 10.1016/j.matlet.2021.129524. Instrument: openQCM. https://openqcm.com/scientific-papers/effect-of-chitosan-dissolved-in-different-acetic-acid-concentration-towards-voc-sensing-performance-of-quartz-crystal-microbalance-overlay-with-chitosan
- Effect of Surface Modified Quartz Crystal Microbalance (QCM) on Detection Sensitivity for Prostate Specific Antigen (PSA) — Thita Sonklin, Dhananjaya Munthala, Sanong Suksaweang et al., *Integrated Ferroelectrics* (2022). DOI: 10.1080/10584587.2021.1961519. Instrument: openQCM. https://openqcm.com/scientific-papers/effect-of-surface-modified-quartz-crystal-microbalance-qcm-on-detection-sensitivity-for-prostate-specific-antigen-psa
- Effective antibodies immobilization and functionalized nanoparticles in a quartz-crystal microbalance-based immunosensor for the detection of parathion — Bartolomeo Della Ventura, Marco Iannaccone, Riccardo Funari et al., *PLoS One* (2017). DOI: 10.1371/journal.pone.0171754. Instrument: openQCM 1. https://openqcm.com/scientific-papers/effective-antibodies-immobilization-and-functionalized-nanoparticles-in-a-quartz-crystal-microbalance-based-immunosensor-for-the-detection-of-parathion
- Effects of crosslink density in zwitterionic hydrogel coatings on their antifouling performance and susceptibility to silt uptake — Julian Koc, Eric Schönemann, Robin Wanka et al., *Biofouling* (2020). DOI: 10.1080/08927014.2020.1796983. Instrument: openQCM. https://openqcm.com/scientific-papers/effects-of-crosslink-density-in-zwitterionic-hydrogel-coatings-on-their-antifouling-performance-and-susceptibility-to-silt-uptake
- Effects of model membranes on lysozyme amyloid aggregation — Annaclaudia Burrelli, Paolo Moretti, Yuri Gerelli et al., *BioMolecular Concepts* (2023). DOI: 10.1515/bmc-2022-0034. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/effects-of-model-membranes-on-lysozyme-amyloid-aggregation
- Effects of structural and chemical properties of surface coatings on the adsorption characteristics of proteins — Alejandro Avila-Sierra, Jose A Moreno, Kylee Goode et al., *Surface and Coatings Technology* (2022). DOI: 10.1016/j.surfcoat.2022.129054. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/effects-of-structural-and-chemical-properties-of-surface-coatings-on-the-adsorption-characteristics-of-proteins
- Efficient OER catalyst with low Ir volume density obtained by homogeneous deposition of iridium oxide nanoparticles on macroporous antimony-doped tin oxide support — Daniel Böhm, Michael Beetz, Maximilian Schuster et al., *Advanced functional materials* (2020). DOI: 10.1002/adfm.201906670. Instrument: openQCM 1. https://openqcm.com/scientific-papers/efficient-oer-catalyst-with-low-ir-volume-density-obtained-by-homogeneous-deposition-of-iridium-oxide-nanoparticles-on-macroporous-antimony-doped-tin-oxide-support
- Electrophoresis and Quartz Crystal Microbalance Instrumentation to Sense Nanoplastics in Water — Wei Yin Lim, Ee V. Lau, Narayanan Ramakrishnan, *Analytical Chemistry* (2024). DOI: 10.1021/acs.analchem.4c05466. Instrument: openQCM. https://openqcm.com/scientific-papers/electrophoresis-and-quartz-crystal-microbalance-instrumentation-to-sense-nanoplastics-in-water
- Electrospun biotin-and streptavidin-coated quartz crystal microbalance surfaces: characterization and mass sensing performance using OpenQCM — Erhan Ermek, Esra Ayan, Nurettin Tokay et al., *Research Square* (2023). DOI: 10.21203/rs.3.rs-2995721/v1. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/electrospun-biotin-and-streptavidin-coated-quartz-crystal-microbalance-surfaces-characterization-and-mass-sensing-performance-using-openqcm
- Electrospun polyvinyl acetate nanofiber modified quartz crystal microbalance for detection of primary alcohol vapor — Aditya Rianjanu, Kuwat Triyana, Doni B Nugroho et al., *Sensors and Actuators A: Physical* (2020). DOI: 10.1016/j.sna.2019.111742. Instrument: openQCM. https://openqcm.com/scientific-papers/electrospun-polyvinyl-acetate-nanofiber-modified-quartz-crystal-microbalance-for-detection-of-primary-alcohol-vapor
- Elliptical Electrode Designs in Quartz Crystal Microbalances: Enhancing Sensitivity in Liquid Biosensing Applications — Afri Ahamed, Chien Wei Ooi, Hui Jean Lim et al., *Available at SSRN 5094062* (2025). DOI: 10.2139/ssrn.5094062. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/elliptical-electrode-designs-in-quartz-crystal-microbalances-enhancing-sensitivity-in-liquid-biosensing-applications
- Elliptical Electrode Designs in Quartz Crystal Microbalances: Enhancing Sensitivity in Liquid Biosensing Applications — Afri Ahamed, Chien Wei Ooi, Hui Jean Lim et al., *Sensors and Actuators A: Physical* (2025). DOI: 10.1016/j.sna.2025.116392. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/elliptical-electrode-designs-in-quartz-crystal-microbalances-enhancing-sensitivity-in-liquid-biosensing-applications-2
- Emerging business models for open source hardware — Joshua M Pearce, *Journal of Open Hardware* (2017). DOI: 10.5334/joh.4. Instrument: openQCM. https://openqcm.com/scientific-papers/emerging-business-models-for-open-source-hardware
- Emission of UV filter chemicals from PET fabric Examining the release to water during washing — Simone Lindmark, *DiVA at Umeå University (Umeå University)* (2019). Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/emission-of-uv-filter-chemicals-from-pet-fabric-examining-the-release-to-water-during-washing
- Endokrin Bozucu Hormonlara Özgü Gravimetrik Nanosensörün Hazirlanmasi ve Moleküler Modellenmesi — Gülgün Aylaz (2022). Instrument: openQCM. https://openqcm.com/scientific-papers/endokrin-bozucu-hormonlara-ozgu-gravimetrik-nanosensorun-hazirlanmasi-ve-molekuler-modellenmesi
- Engineered dynamic configuration of nanopores to access enhanced diffusion and selectivity for aliphatic isomers — Susmita Kundu, Komal Jindal, Soumya Ghosh et al., *ChemRxiv* (2025). DOI: 10.26434/chemrxiv-2025-xn2c4. Instrument: openQCM 1. https://openqcm.com/scientific-papers/engineered-dynamic-configuration-of-nanopores-to-access-enhanced-diffusion-and-selectivity-for-aliphatic-isomers
- Enhanced Adsorption of Epoxy-Functional Nanoparticles onto Stainless Steel Significantly Reduces Friction in Tribological Studies — Dr. Csilla György, Dr. Paul M. Kirkman, Dr. Thomas J. Neal et al., *Angewandte Chemie International Edition* (2023). DOI: 10.1002/anie.202218397. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/enhanced-adsorption-of-epoxy-functional-nanoparticles-onto-stainless-steel-significantly-reduces-friction-in-tribological-studies
- Enhanced Ionic Liquids for Acidic Gases Solubility and Task Specific Ionic Liquid for SO₂ Absorption — Juan Manuel Herrera Marín, *The Hong Kong University of Science and Technology* (2020). DOI: 10.14711/thesis-991012936366803412. Instrument: openQCM 1. https://openqcm.com/scientific-papers/enhanced-ionic-liquids-for-acidic-gases-solubility-and-task-specific-ionic-liquid-for-so%e2%82%82-absorption
- Enhanced sensitivity and selectivity of ammonia sensing by QCM modified with boric acid-doped PVAc nanofiber — Roto Roto, Aditya Rianjanu, Innas Amaliya Fatyadi et al., *Sensors and Actuators A: Physical* (2020). DOI: 10.1016/j.sna.2020.111902. Instrument: openQCM. https://openqcm.com/scientific-papers/enhanced-sensitivity-and-selectivity-of-ammonia-sensing-by-qcm-modified-with-boric-acid-doped-pvac-nanofiber
- Enhanced trimethylamine gas sensor sensitivity based on quartz crystal microbalance using nanofibers overlaid with maltodextrin — Rizky Aflaha, Laila Katriani, Ahmad Hasan As’ ari et al., *MRS Communications* (2023). DOI: 10.1557/s43579-023-00409-3. Instrument: openQCM. https://openqcm.com/scientific-papers/enhanced-trimethylamine-gas-sensor-sensitivity-based-on-quartz-crystal-microbalance-using-nanofibers-overlaid-with-maltodextrin
- Enhancing the Pressure-Sensitive Electrical Conductance of Self-Assembled Monolayers — Xintai Wang, Asma Alajmi, Zhangchenyu Wei et al., *ACS Applied Materials &amp; Interfaces* (2024). DOI: 10.1021/acsami.4c15796. Instrument: openQCM 1. https://openqcm.com/scientific-papers/enhancing-the-pressure-sensitive-electrical-conductance-of-self-assembled-monolayers
- Enzyme-Based Biosensor Production and Investigation of Sensitivity Properties — Deniz Ege Deniz, *Balıkesir University* (2023). Instrument: openQCM 1. https://openqcm.com/scientific-papers/enzyme-based-biosensor-production-and-investigation-of-sensitivity-properties
- ESA flying payloads on wooden satellite — Zhu Zhongming, Lu Linong, Yao Xiaona et al. (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/esa-flying-payloads-on-wooden-satellite
- Essential elements towards the development of diamond-based biosensors for bacteria detection in water — Lucie Dubovská (2023). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/essential-elements-towards-the-development-of-diamond-based-biosensors-for-bacteria-detection-in-water
- Essential elements towards the development of diamond-based biosensors for bacteria detection in water — Lucie Dubovská (2023). Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/essential-elements-towards-the-development-of-diamond-based-biosensors-for-bacteria-detection-in-water-2
- Estudio de la activación plaquetaria en respuesta a la proteína no estructural 1 (NS1) de los virus de dengue y Zika — Alan Fabricio Cano Méndez, others (2020). Instrument: openQCM. https://openqcm.com/scientific-papers/estudio-de-la-activacion-plaquetaria-en-respuesta-a-la-proteina-no-estructural-1-ns1-de-los-virus-de-dengue-y-zika
- Evaluation of Dynamic Viscosity in the 10 MHz Range Using a General-Purpose Quartz Crystal Microbalance — Ryota Yoshizawa, Osamu Urakawa, Tadashi Inoue, *Nihon Reoroji Gakkaishi* (2022). DOI: 10.1678/rheology.50.333. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/evaluation-of-dynamic-viscosity-in-the-10-mhz-range-using-a-general-purpose-quartz-crystal-microbalance
- Evaluation of Linkers’ Influence on Peptide-Based Piezoelectric Biosensors’ Sensitivity to Aldehydes in the Gas Phase — Tomasz Wasilewski, Damian Neubauer, Marek Wojciechowski et al., *International Journal of Molecular Sciences* (2023). DOI: 10.3390/ijms241310610. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/evaluation-of-linkers-influence-on-peptide-based-piezoelectric-biosensors-sensitivity-to-aldehydes-in-the-gas-phase
- Evaluation of Natural Polyphenols for Anti-Aggregation and Potential Neuroprotection Against Beta-Amyloid, in Vitro — Hy K Lai (2023). Instrument: openQCM 1. https://openqcm.com/scientific-papers/evaluation-of-natural-polyphenols-for-anti-aggregation-and-potential-neuroprotection-against-beta-amyloid-in-vitro
- Evaluation of three peptide immobilization techniques on a qcm surface related to acetaldehyde responses in the gas phase — Tomasz Wasilewski, Bartosz Szulczyński, Wojciech Kamysz et al., *Sensors* (2018). DOI: 10.3390/s18113942. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/evaluation-of-three-peptide-immobilization-techniques-on-a-qcm-surface-related-to-acetaldehyde-responses-in-the-gas-phase
- Expanding Equitable Access to Experimental Research and STEM Education by Supporting Open Source Hardware Development — JM Pearce, JC Molloy, S Kuznetsov et al., *http://openhardware. science/2019/01/27/expanding-equitable-access-to-experimental-research-and-stem-education-by-supporting-open-source-hardware-development* (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/expanding-equitable-access-to-experimental-research-and-stem-education-by-supporting-open-source-hardware-development
- Experimental Physical Chemistry Applications for Material Science: The Neutron Vibrational Spectrum of Biaxially-Oriented PET and HKUST-1 as a QCM-Based Ethylene Sensor — Zachary D Stroupe (2022). Instrument: openQCM 1. https://openqcm.com/scientific-papers/experimental-physical-chemistry-applications-for-material-science-the-neutron-vibrational-spectrum-of-biaxially-oriented-pet-and-hkust-1-as-a-qcm-based-ethylene-sensor
- Fabrication of liquid-infused surfaces via mussel-inspired chemistry — Salvatore Chiera (2022). Instrument: openQCM 1. https://openqcm.com/scientific-papers/fabrication-of-liquid-infused-surfaces-via-mussel-inspired-chemistry
- Facile ultrathin film of silver nanoparticles for bacteria sensing — Parul Taneja, V Manjuladevi, RK Gupta et al., *Colloids and Surfaces B: Biointerfaces* (2020). DOI: 10.1016/j.colsurfb.2020.111335. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/facile-ultrathin-film-of-silver-nanoparticles-for-bacteria-sensing
- Flexible immunosensor for the detection of salivary α-amylase in body fluids — Bartolomeo Della Ventura, Nikola Sakač, Riccardo Funari et al., *Talanta* (2017). DOI: 10.1016/j.talanta.2017.05.075. Instrument: openQCM. https://openqcm.com/scientific-papers/flexible-immunosensor-for-the-detection-of-salivary-alpha-amylase-in-body-fluids
- Fluorescent plastic nanoparticles to track their interaction and fate in physiological environments — Jessica Caldwell, Roman Lehner, Sandor Balog et al., *Environmental Science: Nano* (2021). DOI: 10.1039/d0en00944j. Instrument: openQCM 1. https://openqcm.com/scientific-papers/fluorescent-plastic-nanoparticles-to-track-their-interaction-and-fate-in-physiological-environments
- Formaldehyde Gas Sensor Based on Quartz Crystal Microbalance Modified with Aniline-Doped Polyvinyl Acetate Nanofibers — Sintia Ainus Sofa, Roto Roto, Rizky Aflaha et al., *The Analyst* (2023). DOI: 10.1039/d3an01856c. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/formaldehyde-gas-sensor-based-on-quartz-crystal-microbalance-modified-with-aniline-doped-polyvinyl-acetate-nanofibers
- From Sticky to Slippery: Self-Functionalizing Lubricants for In Situ Fabrication of Liquid-Infused Surfaces — Salvatore Chiera, Vanessa M Koch, Gudrun Bleyer et al., *ACS Applied Materials &amp; Interfaces* (2022). DOI: 10.1021/acsami.2c02390. Instrument: openQCM. https://openqcm.com/scientific-papers/from-sticky-to-slippery-self-functionalizing-lubricants-for-in-situ-fabrication-of-liquid-infused-surfaces
- Functional Thin Films Synthesized from Liquid Precursors by Combining Mist Chambers and Atmospheric-Pressure Plasma Polymerization — Laura Barillas, Ekaterina Makhneva, Sehoon An et al., *Coatings* (2021). DOI: 10.3390/coatings11111336. Instrument: openQCM 1. https://openqcm.com/scientific-papers/functional-thin-films-synthesized-from-liquid-precursors-by-combining-mist-chambers-and-atmospheric-pressure-plasma-polymerization
- Functionalized terpolymer-brush-based biointerface with improved antifouling properties for ultra-sensitive direct detection of virus in crude clinical samples — Michala Forinová, Alina Pilipenco, Ivana Vísová et al., *ACS Applied Materials &amp; Interfaces* (2021). DOI: 10.1021/acsami.1c16930. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/functionalized-terpolymer-brush-based-biointerface-with-improved-antifouling-properties-for-ultra-sensitive-direct-detection-of-virus-in-crude-clinical-samples
- Global technology access in biolabs–from DIY trend to an open source transformation — Tobias Wenzel, *arXiv preprint arXiv:2210.08976* (2022). DOI: 10.48550/arxiv.2210.08976. Instrument: openQCM. https://openqcm.com/scientific-papers/global-technology-access-in-biolabs-from-diy-trend-to-an-open-source-transformation
- Gold Nanoparticle – Assisted Multiharmonic and Multivariate QCM Sensing of miRNA-21 — Francesca Izzo, Annesha Mazumder, Florence Poulletier De Gannes et al., *IEEE Sensors Journal* (2026). DOI: 10.1109/JSEN.2026.3673862. Instrument: openQCM. https://openqcm.com/scientific-papers/gold-nanoparticle-assisted-multiharmonic-and-multivariate-qcm-sensing-of-mirna-21
- Growth of lithium hydride thin films from solutions: Towards solution atomic layer deposition of lithiated films — Ivan Kundrata, Karol Fröhlich, Lubomír Vančo et al., *Beilstein Journal of Nanotechnology* (2019). DOI: 10.3762/bjnano.10.142. Instrument: openQCM 1. https://openqcm.com/scientific-papers/growth-of-lithium-hydride-thin-films-from-solutions-towards-solution-atomic-layer-deposition-of-lithiated-films
- Harnessing Halogenated Zeolitic Imidazolate Frameworks for Alcohol Vapor Adsorption — Kevin Dedecker, Martin Drobek, A. Julbe, *Molecules* (2024). DOI: 10.3390/molecules29245825. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/harnessing-halogenated-zeolitic-imidazolate-frameworks-for-alcohol-vapor-adsorption
- Heated quartz crystal microbalance with highly controlled integration of ZIF-67 for ultra-reliable humidity sensing — Il Ryu Jang, Sugato Hajra, Rojalin Sahu et al., *Sensors and Actuators B: Chemical* (2023). DOI: 10.1016/j.snb.2023.134589. Instrument: openQCM. https://openqcm.com/scientific-papers/heated-quartz-crystal-microbalance-with-highly-controlled-integration-of-zif-67-for-ultra-reliable-humidity-sensing
- Heavy Metal Detection Methods in Water using Quartz Crystal Microbalance — Jiexiong Xu, *Figshare* (2022). DOI: 10.25394/PGS.19684002.v1. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/heavy-metal-detection-methods-in-water-using-quartz-crystal-microbalance
- HfS 2 thin films deposited at room temperature by an emerging technique, solution atomic layer deposition — Yuanyuan Cao, Sha Zhu, Julien Bachmann, *Dalton Transactions* (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/hfs-2-thin-films-deposited-at-room-temperature-by-an-emerging-technique-solution-atomic-layer-deposition
- Hierarchical adsorption at hair-mimetic interfaces : A neutron reflectivity study — Serena Cozzolino, *KTH Publication Database DiVA (KTH Royal Institute of Technology)* (2024). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/hierarchical-adsorption-at-hair-mimetic-interfaces-a-neutron-reflectivity-study
- Hierarchical TiO2: Cu2O nanostructures for gas/vapor sensing and CO2 sequestration — Eric S Muckley, Tolga Aytug, Richard Mayes et al., *ACS Applied Materials &amp; Interfaces* (2019). Instrument: openQCM 1. https://openqcm.com/scientific-papers/hierarchical-tio2-cu2o-nanostructures-for-gas-vapor-sensing-and-co2-sequestration
- High-performance formic acid gas detection using a quartz crystal microbalance functionalized with Cdot-decorated polyvinyl acetate nanofibers — Chlara Naren Maharani, Henny Afiyanti, Firdausya Danuansa et al., *Analyst* (2026). DOI: 10.1039/D6AN00209A. Instrument: openQCM. https://openqcm.com/scientific-papers/high-performance-formic-acid-gas-detection-using-a-quartz-crystal-microbalance-functionalized-with-cdot-decorated-polyvinyl-acetate-nanofibers
- High-performance formic acid gas detection using a quartz crystal microbalance functionalized with Cdot-decorated polyvinyl acetate nanofibers — Chlara Naren Maharani, Henny Afiyanti, Firdausya Danuansa et al., *Analyst* (2026). DOI: 10.1039/D6AN00209A. Instrument: openQCM. https://openqcm.com/scientific-papers/high-performance-formic-acid-gas-detection-using-a-quartz-crystal-microbalance-functionalized-with-cdot-decorated-polyvinyl-acetate-nanofibers-2
- High-Sensitivity and Environmentally Friendly Humidity Sensors Deposited with Recyclable Green Microspheres for Wireless Monitoring — Jueying Yang, Liying Feng, Yu Chen et al., *ACS Applied Materials &amp; Interfaces* (2022). DOI: 10.1021/acsami.2c00489. Instrument: openQCM. https://openqcm.com/scientific-papers/high-sensitivity-and-environmentally-friendly-humidity-sensors-deposited-with-recyclable-green-microspheres-for-wireless-monitoring
- Highly permeable perfluorinated sulfonic acid ionomers for improved electrochemical devices: insights into structure–property relationships — Adlai Katzenberg, Anamika Chowdhury, Minfeng Fang et al., *Journal of the American Chemical Society* (2020). DOI: 10.1021/jacs.9b09170. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/highly-permeable-perfluorinated-sulfonic-acid-ionomers-for-improved-electrochemical-devices-insights-into-structure-property-relationships
- Highly Sensitive Safrole Sensor Based on Chitosan Modified Electrospun Polyacrylonitrile Nanofibers — Novalia Nurbaiti, Rosita Wati, Sunarto, *Jurnal Sains* (2023). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/highly-sensitive-safrole-sensor-based-on-chitosan-modified-electrospun-polyacrylonitrile-nanofibers
- Histidine-Functionalized Diblock Copolymer Nanoparticles Exhibit Enhanced Adsorption onto Planar Stainless Steel — Emma E Brotherton, Daniel Josland, Csilla Gyorgy et al., *Macromolecular Rapid Communications* (2022). DOI: 10.1002/marc.202200903. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/histidine-functionalized-diblock-copolymer-nanoparticles-exhibit-enhanced-adsorption-onto-planar-stainless-steel
- Hyaluronic Acid-Coated Solid Lipid Nanoparticles-Functionalized Quartz-Crystal Microbalance (QCM) Immunosensor for Label-Free Haptoglobin Detection: Toward Monitoring of Neuroinflammation — Mariagrazia Lettieri, Luigi Talarico, Giulia Gabbricci et al., *Analytical Chemistry* (2025). DOI: 10.1021/acs.analchem.5c05079. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/hyaluronic-acid-coated-solid-lipid-nanoparticles-functionalized-quartz-crystal-microbalance-qcm-immunosensor-for-label-free-haptoglobin-detection-toward-monitoring-of-neuroinflammation
- Hydrophilic Aldehyde-Functional Polymer Brushes: Synthesis, Characterization, and Potential Bioapplications — Emma E Brotherton, Edwin C Johnson, Mark J Smallridge et al., *Macromolecules* (2023). DOI: 10.1021/acs.macromol.2c02471. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/hydrophilic-aldehyde-functional-polymer-brushes-synthesis-characterization-and-potential-bioapplications
- Hygroscopicity and Cloud Condensation Nuclei Activity of Fresh and Aged Biomass Burning Particles — Bin Bai, Aishwarya Singh, Tianchang Xu et al., *ACS ES&T Air* (2026). DOI: 10.1021/acsestair.5c00331. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/hygroscopicity-and-cloud-condensation-nuclei-activity-of-fresh-and-aged-biomass-burning-particles
- Hygrosensitive Response and Characteristics of Copolymer Coatings with Potential for Humidity Monitoring — Katerina Lazarova, Silvia Bozhilova, Martina Docheva et al., *Coatings* (2025). DOI: 10.3390/coatings15080954. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/hygrosensitive-response-and-characteristics-of-copolymer-coatings-with-potential-for-humidity-monitoring
- Identification of an efficient adsorbent for ethanol sensing at room temperature using quartz crystal microbalance — Mohit Kumar, Achraf EL Mohajir, Franck Berger et al., *Microporous and Mesoporous Materials* (2022). DOI: 10.1016/j.micromeso.2022.111869. Instrument: openQCM. https://openqcm.com/scientific-papers/identification-of-an-efficient-adsorbent-for-ethanol-sensing-at-room-temperature-using-quartz-crystal-microbalance
- Identification of Mint Scents Using a QCM Based E-Nose. Chemosensors 2021, 9, 31 — S Okur, M Sarheed, R Huber et al. (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/identification-of-mint-scents-using-a-qcm-based-e-nose-chemosensors-2021-9-31
- Immobilized xanthine oxidase with bio-composite using gas biosensor — Tayfun Uzunoğlu, Murat Evyapan, Serap Beyaztaş Uzunoğlu et al. (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/immobilized-xanthine-oxidase-with-bio-composite-using-gas-biosensor
- Improving ammonia sensing performance of quartz crystal microbalance (QCM) coated with nanofibers and polyaniline (PANi) overlay — Rizky Aflaha, Henny Afiyanti, Zhafirah Nur Azizah et al., *Biosensors and Bioelectronics: X* (2022). DOI: 10.1016/j.biosx.2022.100300. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/improving-ammonia-sensing-performance-of-quartz-crystal-microbalance-qcm-coated-with-nanofibers-and-polyaniline-pani-overlay
- Improving instrument reproducibility with open source hardware — Richard W Bowman, *Nature Reviews Methods Primers* (2023). DOI: 10.1038/s43586-023-00218-x. Instrument: openQCM. https://openqcm.com/scientific-papers/improving-instrument-reproducibility-with-open-source-hardware
- In situ monitoring of corrosion inhibitor film formation and efficiency using simultaneous dynamic EIS and microbalance measurement — Hubert Kwiatkowski, Stefan Krakowiak, Paweł Ślepski, *Corrosion* (2026). DOI: 10.5006/4929. Instrument: openQCM. https://openqcm.com/scientific-papers/in-situ-monitoring-of-corrosion-inhibitor-film-formation-and-efficiency-using-simultaneous-dynamic-eis-and-microbalance-measurement
- in the Faculty of Science and Engineering — Daniel A Melendrez Armada (2018). Instrument: openQCM. https://openqcm.com/scientific-papers/in-the-faculty-of-science-and-engineering
- In-line detection of monoclonal antibodies in the effluent of protein A chromatography with QCM sensor — Matic Kisovec, Gregor Anderluh, Marjetka Podobnik et al., *Analytical biochemistry* (2020). DOI: 10.1016/j.ab.2020.113899. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/in-line-detection-of-monoclonal-antibodies-in-the-effluent-of-protein-a-chromatography-with-qcm-sensor
- In-situ analysis of solid-electrolyte interphase formation and cycle behavior of Sn battery anodes — Ke Wang, Yug Joshi, Hong Chen et al., *Journal of Power Sources* (2022). DOI: 10.1016/j.jpowsour.2022.231439. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/in-situ-analysis-of-solid-electrolyte-interphase-formation-and-cycle-behavior-of-sn-battery-anodes
- In-situ measurements and modelling of the oxidation kinetics in films of a cooking aerosol proxy using a Quartz Crystal Microbalance with Dissipation monitoring (QCM-D) — Adam Milsom, Shaojun Qi, Ashmi Mishra et al., *EGUsphere* (2023). DOI: 10.5194/acp-23-10835-2023. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/in-situ-measurements-and-modelling-of-the-oxidation-kinetics-in-films-of-a-cooking-aerosol-proxy-using-a-quartz-crystal-microbalance-with-dissipation-monitoring-qcm-d
- Influence of Al Doping on the Morphological, Structural and Gas Sensing Properties of Electrochemically Deposited ZnO Films on Quartz Resonators — Gergana Alexieva, Konstantin Lovchinov, Miroslav Petrov et al., *Coatings* (2022). Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/influence-of-al-doping-on-the-morphological-structural-and-gas-sensing-properties-of-electrochemically-deposited-zno-films-on-quartz-resonators
- Influence of coating structure of an SiOx barrier coating on a PET substrate on water vapor permeation activation energy — J Franke, MO Liedke, P Dahmen et al., *Proceedings of the 39th International Conference of the Polymer Processing Society (PPS-39)* (2024). DOI: 10.51573/Andes.PPS39.GS.NN.1. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/influence-of-coating-structure-of-an-siox-barrier-coating-on-a-pet-substrate-on-water-vapor-permeation-activation-energy
- Influence of plant-based compounds on the structural stability of mucous boundary layers in tribological contact — Samuel S. Gamaniel, Erik G. Vries, R. Hans Tromp et al., *Tribology International* (2025). DOI: 10.1016/j.triboint.2025.110688. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/influence-of-plant-based-compounds-on-the-structural-stability-of-mucous-boundary-layers-in-tribological-contact
- Influence of the SMN antibody on quartz crystal microbalance with dissipation (QCM-D) surface as an SMN protein biosensor — Hanif Khoirudin, Rizky Aflaha, Eldiana Rully Arsetiyani et al., *MRS Communications* (2023). DOI: 10.1557/s43579-023-00492-6. Instrument: openQCM. https://openqcm.com/scientific-papers/influence-of-the-smn-antibody-on-quartz-crystal-microbalance-with-dissipation-qcm-d-surface-as-an-smn-protein-biosensor
- Influences of Adhesion Variability on the “Living” Dynamics of Filamentous Bacteria in Microfluidic Channels — Justin P Jahnke, Jessica L Terrell, Austin M Smith et al., *Molecules* (2016). DOI: 10.3390/molecules21080985. Instrument: openQCM 1. https://openqcm.com/scientific-papers/influences-of-adhesion-variability-on-the-living-dynamics-of-filamentous-bacteria-in-microfluidic-channels
- Inmunosensor piezoeléctrico de alta frecuencia (100 MHz) para la detección y cuantificación de una molécula modelo — Laura Buitrago Mejía (2017). Instrument: openQCM. https://openqcm.com/scientific-papers/inmunosensor-piezoelectrico-de-alta-frecuencia-100-mhz-para-la-deteccion-y-cuantificacion-de-una-molecula-modelo
- Integrated electrochemical and mass biosensor for early dengue detection — Ahmad Anwar Zainuddin (2020). Instrument: openQCM. https://openqcm.com/scientific-papers/integrated-electrochemical-and-mass-biosensor-for-early-dengue-detection
- Intelligent mobile electronic nose system comprising a hybrid polymer-functionalized quartz crystal microbalance sensor array — Trisna Julian, Shidiq Nur Hidayat, Aditya Rianjanu et al., *ACS omega* (2020). DOI: 10.1021/acsomega.0c04433. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/intelligent-mobile-electronic-nose-system-comprising-a-hybrid-polymer-functionalized-quartz-crystal-microbalance-sensor-array
- Interaction of negatively and positively capped gold nanoparticle with different lipid model membranes — Alan J Sheridan, Katherine C Thompson, Jonathan M Slater, *Biophysical Chemistry* (2022). DOI: 10.1016/j.bpc.2022.106896. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/interaction-of-negatively-and-positively-capped-gold-nanoparticle-with-different-lipid-model-membranes
- Interactions between proteins and biomaterials-an experimental and computational multiscale study — Evangelos Liamas, *University of Birmingham Institutional Research Archive (University of Birmingham)* (2018). Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/interactions-between-proteins-and-biomaterials-an-experimental-and-computational-multiscale-study
- Interactions of Choline and Geranate (CAGE) and Choline Octanoate (CAOT) Deep Eutectic Solvents with Lipid Bilayers — George M Neville, Ana-Maria Dobre, Gavin J Smith et al., *Advanced Functional Materials* (2023). DOI: 10.1002/adfm.202306644. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/interactions-of-choline-and-geranate-cage-and-choline-octanoate-caot-deep-eutectic-solvents-with-lipid-bilayers
- Interazione del recettore ACE2 con superfici solide per applicazioni biosensoristiche — ANASTASIA ANCONETANI (2022). Instrument: openQCM. https://openqcm.com/scientific-papers/interazione-del-recettore-ace2-con-superfici-solide-per-applicazioni-biosensoristiche
- Investigation of Calix[4]arene Derivatives That Can Be Sensitive for Chlorinated Volatile Organic Compound (CVOC) Species in Quartz Crystal Microbalance (QCM) Sensor System — Seda Büşra Çançin, *Konya Technical University* (2021). Instrument: openQCM 1. https://openqcm.com/scientific-papers/investigation-of-calix4arene-derivatives-that-can-be-sensitive-for-chlorinated-volatile-organic-compound-cvoc-species-in-quartz-crystal-microbalance-qcm-sensor-system
- Investigation of Interaction of Soft Nanoparticles based Vesicles with Lung Surfactant via Langmuir-Blodgett Trough and Quartz Crystal Microbalance Study — Uzma Azam, *Journal of Nanomedicine & Nanotechnology* (2018). DOI: 10.4172/2157-7439.1000504. Instrument: openQCM 1. https://openqcm.com/scientific-papers/investigation-of-interaction-of-soft-nanoparticles-based-vesicles-with-lung-surfactant-via-langmuir-blodgett-trough-and-quartz-crystal-microbalance-study
- Investigation of the Free-Base Zr-Porphyrin MOFs as Humidity Sensors for an Indoor Setting — Nicholaus Prasetya, Salih Okur, *ChemRxiv* (2024). DOI: 10.26434/chemrxiv-2024-1jwr7. Instrument: openQCM. https://openqcm.com/scientific-papers/investigation-of-the-free-base-zr-porphyrin-mofs-as-humidity-sensors-for-an-indoor-setting
- Investigation of the free-base Zr-porphyrin MOFs as relative humidity sensors for an indoor setting — Nicholaus Prasetya, Salih Okur, *Sensors and Actuators A: Physical* (2024). DOI: 10.1016/j.sna.2024.115713. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/investigation-of-the-free-base-zr-porphyrin-mofs-as-relative-humidity-sensors-for-an-indoor-setting
- Investigation of the Multiple Doping of Citric Acid and Chitosan in Nanofiber for Enhancement of a Quartz Crystal Microbalance-Based Ammonia Sensor — Ahmad Hasan As’ ari, Rizky Aflaha, Laila Katriani et al., *Journal of Electronic Materials* (2024). DOI: 10.1007/s11664-024-11646-0. Instrument: openQCM. https://openqcm.com/scientific-papers/investigation-of-the-multiple-doping-of-citric-acid-and-chitosan-in-nanofiber-for-enhancement-of-a-quartz-crystal-microbalance-based-ammonia-sensor
- Karakterisasi sensor QCM dengan pelapisan bahan aktif membran Lipid Oleic Acid pada respon elektroda perak terhadap HCl — Arum Sinda Santika, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-qcm-dengan-pelapisan-bahan-aktif-membran-lipid-oleic-acid-pada-respon-elektroda-perak-terhadap-hcl
- Karakterisasi sensor QCM dengan pelapisan bahan aktif membran Methyltrioctyl Ammonium Chloride pada elektroda perak terhadap respon NaCl — Alvi Hasanati, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-qcm-dengan-pelapisan-bahan-aktif-membran-methyltrioctyl-ammonium-chloride-pada-elektroda-perak-terhadap-respon-nacl
- Karakterisasi sensor QCM dengan pelapisan bahan aktif methyltrioctyl ammonium chloride terhadap respon gelatin babi dan gelatin sapi — Ismatul Fuada, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-qcm-dengan-pelapisan-bahan-aktif-methyltrioctyl-ammonium-chloride-terhadap-respon-gelatin-babi-dan-gelatin-sapi
- Karakterisasi sensor Quartz Crystal Microbalance (QCM) dengan pelapisan membran lipid octadecylamine pada elektroda perak terhadap respon monosodium glutamat — Chaidar Ahmad, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-quartz-crystal-microbalance-qcm-dengan-pelapisan-membran-lipid-octadecylamine-pada-elektroda-perak-terhadap-respon-monosodium-glutamat
- Karakterisasi sensor Quartz Crystal Microbalance (QCM) dengan pelapisan membran lipid octadecylamine terhadap respon HCl dan NaCl — Maria Ulfa, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-quartz-crystal-microbalance-qcm-dengan-pelapisan-membran-lipid-octadecylamine-terhadap-respon-hcl-dan-nacl
- Karakterisasi sensor Quartz Crystal Microbalance (QCM) dengan pelapisan membran lipid oleyl alkohol terhadap respon HCl dan NaCl — Auliya Rahmatul Ummah, *eTheses of Maulana Malik Ibrahim State Islamic University (Maulana Malik Ibrahim State Islamic University)* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-quartz-crystal-microbalance-qcm-dengan-pelapisan-membran-lipid-oleyl-alkohol-terhadap-respon-hcl-dan-nacl
- Karakterisasi sensor quartz crystal microbalance (qcm) dengan pelapisan membran trioctylmethylammonium chloride (toma) pada elektroda emas terhadap respon formalin — Khoirul Aini (2020). Instrument: openQCM 1. https://openqcm.com/scientific-papers/karakterisasi-sensor-quartz-crystal-microbalance-qcm-dengan-pelapisan-membran-trioctylmethylammonium-chloride-toma-pada-elektroda-emas-terhadap-respon-formalin
- Kinetics of Photochemical and Mechanochemical Organic Reactions on Surface — Yerzhan Zholdassov (2023). Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/kinetics-of-photochemical-and-mechanochemical-organic-reactions-on-surface
- Kinetics of viscoelasticity in the electric double layer following steps in the electrode potential studied by a fast electrochemical quartz crystal microbalance (EQCM) — Christian Leppin, Astrid Peschel, Frederick Sebastian Meyer et al., *Analyst* (2021). DOI: 10.1039/d0an01965h. Instrument: openQCM. https://openqcm.com/scientific-papers/kinetics-of-viscoelasticity-in-the-electric-double-layer-following-steps-in-the-electrode-potential-studied-by-a-fast-electrochemical-quartz-crystal-microbalance-eqcm
- L-lysine biodetector based on a TOCNFs-coated Quartz Crystal Microbalance (QCM) — MS Hosseini, M Vossoughi, M Hosseini et al., *European Polymer Journal* (2023). DOI: 10.1016/j.eurpolymj.2023.111831. Instrument: openQCM. https://openqcm.com/scientific-papers/l-lysine-biodetector-based-on-a-tocnfs-coated-quartz-crystal-microbalance-qcm
- Label-Free Piezoelectric Platform for Rapid Point-of-Care Detection of SARS-CoV-2 — Karen Antar, *M.S. thesis, American University of Beirut* (2023). Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/label-free-piezoelectric-platform-for-rapid-point-of-care-detection-of-sars-cov-2
- Layer-by-Layer Fabrication of Fullerene-Intercalated Orthogonal Molecular Architectures Enhances Thermoelectric Behavior of Graphene-Based Nanodevices — Ali Ismael, Xintai Wang, Bashayr Alanazi et al., *Small* (2025). DOI: 10.1002/smll.202507988. Instrument: openQCM 1. https://openqcm.com/scientific-papers/layer-by-layer-fabrication-of-fullerene-intercalated-orthogonal-molecular-architectures-enhances-thermoelectric-behavior-of-graphene-based-nanodevices
- LEAP2 and LCATS industry clusters: A framework for lunar site technology development using global, space-STEM education and global space-industry development networks — Samuel W Ximenes, SherylLynn Roberts, Tai Sik Lee et al., *Acta Astronautica* (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/leap2-and-lcats-industry-clusters-a-framework-for-lunar-site-technology-development-using-global-space-stem-education-and-global-space-industry-development-networks
- Les Fab Labs et guillemotleftateliers numériquesguillemotright en France — François Piuzzi, *Reflets de la physique* (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/les-fab-labs-et-guillemotleftateliers-numeriquesguillemotright-en-france
- Localized and Surface Plasmons Coupling for Ultrasensitive Dopamine Detection by means of SPR-Based Perylene Bisimide/Au Nanostructures Thin Film — Rosanna Pagano, Zois Syrgiannis, Simona Bettini et al., *Advanced Materials Interfaces* (2021). DOI: 10.1002/admi.202101023. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/localized-and-surface-plasmons-coupling-for-ultrasensitive-dopamine-detection-by-means-of-spr-based-perylene-bisimide-au-nanostructures-thin-film
- Long-Range Proton Channels Constructed via Hierarchical Peptide Self-Assembly — Semion Censor, Jorge Vega Martin, Ohad Silberbush et al., *Advanced Materials* (2024). DOI: 10.1002/adma.202409248. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/long-range-proton-channels-constructed-via-hierarchical-peptide-self-assembly
- Low cost and open source multi-fluorescence imaging system for teaching and research in biology and bioengineering — Isaac Nu nez, Tamara Matute, Roberto Herrera et al., *PloS one* (2017). DOI: 10.1371/journal.pone.0187163. Instrument: openQCM. https://openqcm.com/scientific-papers/low-cost-and-open-source-multi-fluorescence-imaging-system-for-teaching-and-research-in-biology-and-bioengineering
- Low-Cost Quartz Crystal Microbalance System Platform Designed for Chemical Nanoparticle — Danming Wei, *TopSCHOLAR (Western Kentucky University)* (2016). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/low-cost-quartz-crystal-microbalance-system-platform-designed-for-chemical-nanoparticle
- Low-cost, in-liquid measuring system using a novel compact oscillation circuit and quartz-crystal microbalances (QCMs) as a versatile biosensor platform — Stefan Beißner, Jan-Wilhelm Thies, Christopher Bechthold et al., *Journal of Sensors and Sensor Systems* (2017). Instrument: openQCM 1. https://openqcm.com/scientific-papers/low-cost-in-liquid-measuring-system-using-a-novel-compact-oscillation-circuit-and-quartz-crystal-microbalances-qcms-as-a-versatile-biosensor-platform
- Luminescent polysaccharides thin films with potential bactericidal activity — Maria Izabel Xavier Scapolan, *LA Referencia (Red Federada de Repositorios Institucionales de Publicaciones Científicas)* (2022). Instrument: openQCM. https://openqcm.com/scientific-papers/luminescent-polysaccharides-thin-films-with-potential-bactericidal-activity
- Machine learning approach to optimization of parameters for impedance measurements of Quartz Crystal Microbalance to improve limit of detection — Ceyhun E Kirimli, Elcim Elgun, Utku Unal, *Biosensors and Bioelectronics: X* (2022). DOI: 10.1016/j.biosx.2022.100121. Instrument: openQCM. https://openqcm.com/scientific-papers/machine-learning-approach-to-optimization-of-parameters-for-impedance-measurements-of-quartz-crystal-microbalance-to-improve-limit-of-detection
- Machine learning-enabled correlation and modeling of multimodal response of thin film to environment on macro and nanoscale using “lab-on-a-crystal” — Eric S Muckley, Liam Collins, Bernadeta R Srijanto et al., *Advanced Functional Materials* (2020). DOI: 10.1002/adfm.201908010. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/machine-learning-enabled-correlation-and-modeling-of-multimodal-response-of-thin-film-to-environment-on-macro-and-nanoscale-using-lab-on-a-crystal
- Magnetic flux penetration in nanoscale wedge-shaped superconducting thin films — LBLG Pinheiro, L Jiang, EA Abbey et al., *arXiv preprint arXiv:2210.09999* (2022). DOI: 10.1103/physrevb.106.224520. Instrument: openQCM 1. https://openqcm.com/scientific-papers/magnetic-flux-penetration-in-nanoscale-wedge-shaped-superconducting-thin-films
- Making the Tools to Do-It-Together: Open-source Compression Screw Manufacturing Case Study1 — Jacob A FRANZ, Joshua M PEARCE (2022). Instrument: openQCM. https://openqcm.com/scientific-papers/making-the-tools-to-do-it-together-open-source-compression-screw-manufacturing-case-study1
- Maltodextrin-overlaid polyvinyl acetate nanofibers for highly sensitive and selective room-temperature ammonia sensors — Rizky Aflaha, Nur Laili Indah Sari, Laila Katriani et al., *Microchemical Journal* (2023). DOI: 10.1016/j.microc.2023.109237. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/maltodextrin-overlaid-polyvinyl-acetate-nanofibers-for-highly-sensitive-and-selective-room-temperature-ammonia-sensors
- Mass and density determination of porous nanoparticle films using a quartz crystal microbalance — Hendrik Joost Ginkel, Sten Vollebregt, Andreas Schmidt-Ott et al., *Nanotechnology* (2022). DOI: 10.1088/1361-6528/ac7811. Instrument: openQCM 1. https://openqcm.com/scientific-papers/mass-and-density-determination-of-porous-nanoparticle-films-using-a-quartz-crystal-microbalance
- Mass measurement of graphene using quartz crystal microbalances — Robin J. Dolleman, Mick Hsu, Sten Vollebregt et al., *Applied Physics Letters* (2019). DOI: 10.1063/1.5111086. Instrument: openQCM 1. https://openqcm.com/scientific-papers/mass-measurement-of-graphene-using-quartz-crystal-microbalances
- Measuring astringency with artificial saliva by quartz crystal microbalance with dissipation monitoring (QCM-D): A dissertation submitted in partial fulfilment of the requirements for the Degree of Master of Science in Food Innovation at Lincoln University — Dunyachut Vatananan, *Lincoln University Research Archive* (2026). Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/measuring-astringency-with-artificial-saliva-by-quartz-crystal-microbalance-with-dissipation-monitoring-qcm-d-a-dissertation-submitted-in-partial-fulfilment-of-the-requirements-for-the-degree-of-ma
- Mechanism of trace-level detection of dibutyl sulfide (DBS) at room temperature using UV-activated MoO3 coated quartz crystal microbalance (QCM) sensor — Jatinder Pal Singh, Anjali Sharma, Mallika Verma et al., *Sensors and Actuators B: Chemical* (2024). DOI: 10.1016/j.snb.2024.137102. Instrument: openQCM. https://openqcm.com/scientific-papers/mechanism-of-trace-level-detection-of-dibutyl-sulfide-dbs-at-room-temperature-using-uv-activated-moo3-coated-quartz-crystal-microbalance-qcm-sensor
- Methodology of selecting the optimal receptor to create an electrochemical immunosensor for equine arteritis virus protein detection — Mateusz Brodowski, Marcin Kowalski, Wioleta Białobrzeska et al., *Chemosensors* (2021). DOI: 10.3390/chemosensors9090265. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/methodology-of-selecting-the-optimal-receptor-to-create-an-electrochemical-immunosensor-for-equine-arteritis-virus-protein-detection
- Mitigating Transport Limitations in Ion-Conducting Polymers by Molecular Design — Adlai Katzenberg (2021). Instrument: openQCM. https://openqcm.com/scientific-papers/mitigating-transport-limitations-in-ion-conducting-polymers-by-molecular-design
- Molecular Layer Deposition from Dissolved Precursors — Johannes Fichtner, Yanlin Wu, Jakob Hitzenberger et al., *ECS Journal of Solid State Science and Technology* (2017). DOI: 10.1149/2.0291709jss. Instrument: openQCM 1. https://openqcm.com/scientific-papers/molecular-layer-deposition-from-dissolved-precursors
- Molecularly Imprinted Polymers (MIPs) for SARS-CoV-2 Omicron variant inhibition: an alternative approach to address the challenge of emerging zoonoses — Marco Dattilo, Francesco Patitucci, Marisa Francesca Motta et al., *Colloids and Surfaces B: Biointerfaces* (2024). DOI: 10.1016/j.colsurfb.2024.114408. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/molecularly-imprinted-polymers-mips-for-sars-cov-2-omicron-variant-inhibition-an-alternative-approach-to-address-the-challenge-of-emerging-zoonoses
- Molecularly imprinted polyvinyl acetate doped with boric acid for sensitivity and selectivity of ammonia sensing by QCM — Nur Aisyah Humairah, Ihsan Nurijal, Sintia Ainus Sofa et al., *Biosensors and Bioelectronics X* (2023). DOI: 10.1016/j.biosx.2023.100320. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/molecularly-imprinted-polyvinyl-acetate-doped-with-boric-acid-for-sensitivity-and-selectivity-of-ammonia-sensing-by-qcm
- MoO3 Coated Quartz Crystal Microbalance as a Room Temperature Ammonia Sensing Platform — Jatinder Pal Singh, Anjali Sharma, Monika Tomar et al., *Integrated ferroelectrics* (2025). DOI: 10.1080/10584587.2025.2482452. Instrument: openQCM. https://openqcm.com/scientific-papers/moo3-coated-quartz-crystal-microbalance-as-a-room-temperature-ammonia-sensing-platform
- MoS2/MXene bilayer quartz crystal microbalance sensor with enhanced sensitivity and selectivity for room-temperature xylene detection — Sepehr Samiei, Azam Iraji zad, Asadollah Kalantarian et al., *Microchimica Acta* (2026). DOI: 10.1007/s00604-026-07952-5. Instrument: openQCM. https://openqcm.com/scientific-papers/mos2-mxene-bilayer-quartz-crystal-microbalance-sensor-with-enhanced-sensitivity-and-selectivity-for-room-temperature-xylene-detection
- Most common sources of pollutants in GLAMs & Assessment of main challenges for an efficient IAQ control:Deliverable 4.1 — Anne‐Laurence Dupont, I. Fouskari, Bertrand Lavedrine et al., *Ministry of Culture Research Portal* (2025). Instrument: openQCM. https://openqcm.com/scientific-papers/most-common-sources-of-pollutants-in-glams-assessment-of-main-challenges-for-an-efficient-iaq-controldeliverable-4-1
- Mucoadhesive Pickering Nanoemulsions via Dynamic Covalent Chemistry — Saul J Hunter, Mahmoud H Abu Elella, Edwin C Johnson et al., *Journal of Colloid and Interface Science* (2023). DOI: 10.1016/j.jcis.2023.07.162. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/mucoadhesive-pickering-nanoemulsions-via-dynamic-covalent-chemistry
- Multi-Frame Super Resolution with Dual Pyramid Multi-Attention Network for Droplet Measurement — Qiangqiang Liu, Hua Yang, Jiankui Chen et al., *IEEE Transactions on Instrumentation and Measurement* (2023). DOI: 10.1109/TIM.2023.3287262. Instrument: openQCM. https://openqcm.com/scientific-papers/multi-frame-super-resolution-with-dual-pyramid-multi-attention-network-for-droplet-measurement
- Multi-modal, ultrasensitive, wide-range humidity sensing with Ti 3 C 2 film — Eric S Muckley, Michael Naguib, Ilia N Ivanov, *Nanoscale* (2018). Instrument: openQCM 1. https://openqcm.com/scientific-papers/multi-modal-ultrasensitive-wide-range-humidity-sensing-with-ti-3-c-2-film
- MULTIDISCIPLINARY RESEARCH ON METHODS AND TECHNOLOGIES ENABLING THE MONITORING OF BACTERIAL BIOFILM GROWTH AND DISINFECTION — Laura Squarcia (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/multidisciplinary-research-on-methods-and-technologies-enabling-the-monitoring-of-bacterial-biofilm-growth-and-disinfection
- Multimodality of structural, electrical, and gravimetric responses of intercalated MXenes to water — Eric S Muckley, Michael Naguib, Hsiu-Wen Wang et al., *ACS nano* (2017). Instrument: openQCM 1. https://openqcm.com/scientific-papers/multimodality-of-structural-electrical-and-gravimetric-responses-of-intercalated-mxenes-to-water
- MULTIPLEXED BIOSENSOR USING QUARTZ-ON-SILICON MICRO-ACOUSTIC (QSIM) TECHNOLOGY FOR IN-VITRO LABEL-FREE INVESTIGATION OF HEMOSTASIS — Aleksandr Oseev, Franck Alexis Chollet, Thomas Lecompte et al., *HAL (Le Centre pour la Communication Scientifique Directe)* (2023). Instrument: openQCM. https://openqcm.com/scientific-papers/multiplexed-biosensor-using-quartz-on-silicon-micro-acoustic-qsim-technology-for-in-vitro-label-free-investigation-of-hemostasis
- Multiwalled carbon nanotube/chitosan composite on quartz crystal microbalance for formaldehyde detection — Aisyah Mahadi, Mohd Razib, Aliza-Aini Md-Ralib et al., *Bulletin of Electrical Engineering and Informatics* (2025). DOI: 10.11591/eei.v14i4.8948. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/multiwalled-carbon-nanotube-chitosan-composite-on-quartz-crystal-microbalance-for-formaldehyde-detection
- Nanofiber-coated quartz crystal microbalance with chitosan overlay for highly sensitive room temperature ammonia gas sensor — Laila Katriani, Rizky Aflaha, Ahmad Hasan As’ari et al., *Microchemical Journal* (2024). DOI: 10.1016/j.microc.2024.111532. Instrument: openQCM. https://openqcm.com/scientific-papers/nanofiber-coated-quartz-crystal-microbalance-with-chitosan-overlay-for-highly-sensitive-room-temperature-ammonia-gas-sensor
- Nanogravimetric and Optical Characterizations of Thrombin Interaction with a Self-Assembled Thiolated Aptamer — Jane Politi, Ilaria Rea, Fabrizia Nici et al., *Journal of Sensors* (2016). DOI: 10.1155/2016/3561863. Instrument: openQCM 1. https://openqcm.com/scientific-papers/nanogravimetric-and-optical-characterizations-of-thrombin-interaction-with-a-self-assembled-thiolated-aptamer
- Nanomaterial sensing: integrating MEMS technology and self-assembled monolayers — Abduljabbar Ibrahim Rasheed Rushdi, *University of Birmingham Institutional Research Archive (University of Birmingham)* (2018). Instrument: openQCM. https://openqcm.com/scientific-papers/nanomaterial-sensing-integrating-mems-technology-and-self-assembled-monolayers
- Nanostructured Thermoelectric Films Synthesised by Spark Ablation and Their Oxidation Behaviour — Hendrik Joost van Ginkel, Lisa Mitterhuber, Marijn Willem van de Putte et al., *Nanomaterials* (2023). DOI: 10.3390/nano13111778. Instrument: openQCM 1. https://openqcm.com/scientific-papers/nanostructured-thermoelectric-films-synthesised-by-spark-ablation-and-their-oxidation-behaviour
- Neutron reflectometry and lung cancer in vitro study of the interaction between mesoporous magnetic nanocarriers and plasma membranes — Pavol Hrubovčák, Nicolò Paracini, Eva Beňová et al., *SSRN Electronic Journal* (2026). DOI: 10.2139/ssrn.7284797. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/neutron-reflectometry-and-lung-cancer-in-vitro-study-of-the-interaction-between-mesoporous-magnetic-nanocarriers-and-plasma-membranes
- New Perspectives for Smart Water Network Monitoring, Partitioning and Protection with Innovative On-line Measuring Sensors — A. Di Nardo, V.H. Alcocer-Yamanaka, C. Altucci et al., *36th IAHR World Congress* (2015). Instrument: openQCM 1. https://openqcm.com/scientific-papers/new-perspectives-for-smart-water-network-monitoring-partitioning-and-protection-with-innovative-on-line-measuring-sensors
- Newly developed QCM-DNA biosensor for SNP detection in small DNA fragments: A wine authenticity case study — Sara Barrias, José R. Fernandes, Paula Martins-Lopes, *Food Control* (2025). DOI: 10.1016/j.foodcont.2024.111036. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/newly-developed-qcm-dna-biosensor-for-snp-detection-in-small-dna-fragments-a-wine-authenticity-case-study
- Novel microfluidic lab-on-circuit for QCM-P oscillators — Calvin Alexander Ng, Sheree Pagsuyoin, Yan Luo, *Sensors and Actuators A: Physical* (2026). DOI: 10.1016/j.sna.2026.118210. Instrument: openQCM. https://openqcm.com/scientific-papers/novel-microfluidic-lab-on-circuit-for-qcm-p-oscillators
- Observing the Sedimentation of TiO2 Nanoparticles in Aqueous Solution Using a Quartz Crystal Microbalance with Dissipation Monitoring — Jacob Nolan Pursley, *MOspace Institutional Repository (University of Missouri)* (2016). Instrument: openQCM. https://openqcm.com/scientific-papers/observing-the-sedimentation-of-tio2-nanoparticles-in-aqueous-solution-using-a-quartz-crystal-microbalance-with-dissipation-monitoring
- On-line measuring sensors for smart water network monitoring — Armando Di Nardo, David Baquero Gonzalez, Tom Baur et al., *EPiC Series in Engineering* (2018). DOI: 10.29007/4fcr. Instrument: openQCM. https://openqcm.com/scientific-papers/on-line-measuring-sensors-for-smart-water-network-monitoring-2
- Open Source Automated Flow Analysis Instrument for Detecting Arsenic in Water — Julián Gutiérrez, Juan Pablo Mochen, Gabriel Eggly et al., *HardwareX* (2022). DOI: 10.1016/j.ohx.2022.e00284. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/open-source-automated-flow-analysis-instrument-for-detecting-arsenic-in-water
- Open Source Quartz Crystal Microbalance with dissipation monitoring — Christian Ariel Mista, Martín Zalazar, Albano Peñalva et al., *Journal of Physics Conference Series* (2016). DOI: 10.1088/1742-6596/705/1/012008. Instrument: openQCM 1. https://openqcm.com/scientific-papers/open-source-quartz-crystal-microbalance-with-dissipation-monitoring
- Open-source digitally replicable lab-grade scales — Benjamin R Hubbard, Joshua M Pearce, *Instruments* (2020). DOI: 10.3390/instruments4030018. Instrument: openQCM. https://openqcm.com/scientific-papers/open-source-digitally-replicable-lab-grade-scales
- OpenQCM. Disponível em:< https://openqcm. com/openqcm> — S NOVAETECH, *Acesso em* (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/openqcm-disponivel-em-https-openqcm-com-openqcm
- Optical monitoring of drug release in hybrid patch based on polymer microneedles and porous silicon membrane — Principia Dardano, Alessandro Caliò, Jane Politi et al., *18th Italian National Conference on Photonic Technologies (Fotonica 2016)* (2016). DOI: 10.1049/cp.2016.0942. Instrument: openQCM. https://openqcm.com/scientific-papers/optical-monitoring-of-drug-release-in-hybrid-patch-based-on-polymer-microneedles-and-porous-silicon-membrane
- Optimization of Electrospray Deposition Conditions of ZnO Thin Films for Ammonia Sensing — Georgi Marinov, Gergana Alexieva, Katerina Lazarova et al., *Nanomaterials* (2024). DOI: 10.3390/nano14121008. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/optimization-of-electrospray-deposition-conditions-of-zno-thin-films-for-ammonia-sensing
- Optimized Detection of Volatile Organic Compounds Utilizing Durable and Selective Arrays of Tailored UiO-66-X SURMOF Sensors — Salih Okur, Tawheed Hashem, Evgenia Bogdanova et al., *ACS sensors* (2024). DOI: 10.1021/acssensors.3c01575. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/optimized-detection-of-volatile-organic-compounds-utilizing-durable-and-selective-arrays-of-tailored-uio-66-x-surmof-sensors
- Optimizing Formalin Detection in Fish Using QCM Sensors with TOMAC Membrane Coatings for Product Quality Monitoring — Muthmainnah Muthmainnah, Khoirul Aini, Imam Tazi et al., *INDONESIAN JOURNAL OF APPLIED PHYSICS* (2024). DOI: 10.13057/ijap.v14i2.92912. Instrument: openQCM 1. https://openqcm.com/scientific-papers/optimizing-formalin-detection-in-fish-using-qcm-sensors-with-tomac-membrane-coatings-for-product-quality-monitoring
- Overview of quartz crystal microbalance behavior analysis and measurement — Sawit Na Songkhla, Takamichi Nakamoto, *Chemosensors* (2021). DOI: 10.3390/chemosensors9120350. Instrument: openQCM. https://openqcm.com/scientific-papers/overview-of-quartz-crystal-microbalance-behavior-analysis-and-measurement
- Oxygen-induced multimodal ultramicroporous structure in 10-nm-thick carbon membranes for enhanced hydrogen separation — Yueqing Shen, Cédric Van Goethem, Heng-Yu Chi et al., *Nature Communications* (2026). DOI: 10.1038/s41467-026-73556-5. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/oxygen-induced-multimodal-ultramicroporous-structure-in-10-nm-thick-carbon-membranes-for-enhanced-hydrogen-separation
- p-ter-Bütilkaliks [4] aren .Immobilize Merrifield Reçinesinin BTK Buharlarina Karşi QCM Sensör Uygulamalari — Farabi Temel, *Bitlis Eren Üniversitesi Fen Bilimleri Dergisi* (2020). Instrument: openQCM. https://openqcm.com/scientific-papers/p-ter-butilkaliks-4-aren-immobilize-merrifield-recinesinin-btk-buharlarina-karsi-qcm-sensor-uygulamalari
- Palm-size wireless piezoelectric immune-biosensing system for rapid E. coli O157:H7 detection — Yang Tian, Lisa Kelso, Yiting Xiao et al., *Sensors International* (2025). DOI: 10.1016/j.sintl.2025.100341. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/palm-size-wireless-piezoelectric-immune-biosensing-system-for-rapid-e-coli-o157h7-detection
- Particle surfaces to study macrophage adherence, migration, and clearance — Dedy Septiadi, Aaron Lee, Miguel Spuch-Calvar et al., *Advanced Functional Materials* (2020). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/particle-surfaces-to-study-macrophage-adherence-migration-and-clearance
- Passivated Covalently Functionalized Quartz Crystal Microbalance for Reusable Detection of Small Proteins — Kwok Liang Lee (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/passivated-covalently-functionalized-quartz-crystal-microbalance-for-reusable-detection-of-small-proteins
- PB0753 Circulating Levels of Podoplanin in Sickle Cell Disease — Ivanio Teixeira Borba-Junior, Carla Roberta Peachazepi Moraes, M. Barbosa et al., *Research and Practice in Thrombosis and Haemostasis* (2023). DOI: 10.1016/j.rpth.2023.101333. Instrument: openQCM 1. https://openqcm.com/scientific-papers/pb0753-circulating-levels-of-podoplanin-in-sickle-cell-disease
- Percolation-Driven β-Relaxation Enables Resonant Acceleration of Crystallization in Amorphous Phase-Change Materials — Yu-Yao Liu, Liang Gao, Jun-Ying Jiang et al., *Advanced Materials* (2026). DOI: 10.1002/adma.75151. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/percolation-driven-%ce%b2-relaxation-enables-resonant-acceleration-of-crystallization-in-amorphous-phase-change-materials
- Performance evaluation and DFT study of a room temperature methylamine gas sensor based on QCM with Fe3O4-PVAc nanofiber active layer — Rizky Aflaha, Arif Lukmantoro, Selly Andaresta et al., *Surfaces and Interfaces* (2026). DOI: 10.1016/j.surfin.2026.108729. Instrument: openQCM. https://openqcm.com/scientific-papers/performance-evaluation-and-dft-study-of-a-room-temperature-methylamine-gas-sensor-based-on-qcm-with-fe3o4-pvac-nanofiber-active-layer
- Perylene bisimide aggregates as probes for subnanomolar discrimination of aromatic biogenic amines — Simona Bettini, Zois Syrgiannis, Rosanna Pagano et al., *ACS applied materials &amp; interfaces* (2019). DOI: 10.1021/acsami.9b04101. Instrument: openQCM. https://openqcm.com/scientific-papers/perylene-bisimide-aggregates-as-probes-for-subnanomolar-discrimination-of-aromatic-biogenic-amines
- Phage display against two-dimensional metal-organic nanosheets as a new route to highly selective biomolecular recognition surfaces — Amelia C Wood, Edwin C Johnson, Ram RR Prasad et al., *Small* (2024). DOI: 10.1002/smll.202406339. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/phage-display-against-two-dimensional-metal-organic-nanosheets-as-a-new-route-to-highly-selective-biomolecular-recognition-surfaces
- Piezoelectric biosensor with dissipation monitoring enables the analysis of bacterial lytic agent activity — Radka Obořilová, Eliška Kučerová, Tibor Botka et al., *Nature - Scientific Reports* (2025). DOI: 10.1038/s41598-024-85064-x. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/piezoelectric-biosensor-with-dissipation-monitoring-enables-the-analysis-of-bacterial-lytic-agent-activity
- Piezoelectric biosensors: shedding light on principles and applications — Petr Skládal, *Microchimica Acta* (2024). DOI: 10.1007%2Fs00604-024-06257-9. Instrument: openQCM. https://openqcm.com/scientific-papers/piezoelectric-biosensors-shedding-light-on-principles-and-applications
- Plasmonic Geometry-Induced Viscoelastic Biocomplex Formation with Optical Concealment, Liquid Slips, and Soundscapes in Bioassays — Zoe Bradley, Nikhil Bhalla, *Analytical Chemistry* (2025). DOI: 10.1021/acs.analchem.4c04859. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/plasmonic-geometry-induced-viscoelastic-biocomplex-formation-with-optical-concealment-liquid-slips-and-soundscapes-in-bioassays
- Platelet Reactivity to Zika and Dengue Non-Structural Protein 1 (NS1) Assessed by Flow Cytometry, Atomic Force Microscopy, and Quartz Crystal Microbalance — Alan Cano-Méndez, Gabriel Espinosa, Nallely García-Larragoiti et al., *International Journal of Laboratory Hematology* (2024). DOI: 10.1111/ijlh.14409. Instrument: openQCM 1. https://openqcm.com/scientific-papers/platelet-reactivity-to-zika-and-dengue-non-structural-protein-1-ns1-assessed-by-flow-cytometry-atomic-force-microscopy-and-quartz-crystal-microbalance
- Point of care devices for detection of Covid-19, malaria and dengue infections: A review — Susmita Baruah, CA Betty, *Bioelectrochemistry* (2024). DOI: 10.1016/j.bioelechem.2024.108704. Instrument: openQCM. https://openqcm.com/scientific-papers/point-of-care-devices-for-detection-of-covid-19-malaria-and-dengue-infections-a-review
- Polyacrylamide coated on quartz crystal microbalance electrodes for highly sensitive sensor of acetic acid — Ahmad Rizani, Sulis Setyawati Winingsih, ADITYA Rianjanu et al., *Materials Science Forum* (2019). DOI: 10.4028/www.scientific.net/msf.948.254. Instrument: openQCM. https://openqcm.com/scientific-papers/polyacrylamide-coated-on-quartz-crystal-microbalance-electrodes-for-highly-sensitive-sensor-of-acetic-acid
- Polyacrylonitrile nanofiber as polar solvent N,N-dimethyl formamide sensor based on quartz crystal microbalance technique — Aditya Rianjanu, Trisna Julian, Shidiq Nur Hidayat et al., *Journal of Physics Conference Series* (2018). DOI: 10.1088/1742-6596/1011/1/012067. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/polyacrylonitrile-nanofiber-as-polar-solvent-nn-dimethyl-formamide-sensor-based-on-quartz-crystal-microbalance-technique
- Polyacrylonitrile nanofiber-based quartz crystal microbalance for sensitive detection of safrole — Aditya Rianjanu, Roto Roto, Trisna Julian et al., *Sensors* (2018). DOI: 10.3390/s18041150. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/polyacrylonitrile-nanofiber-based-quartz-crystal-microbalance-for-sensitive-detection-of-safrole
- Polyethyleneimine-Modified Quartz Crystal Microbalance and its Characteristics for Detecting Acetic Acid — DEWI Purwati, TRISNA Julian, Shidiq Nur Hidayat et al., *Materials Science Forum* (2019). DOI: 10.4028/www.scientific.net/msf.948.294. Instrument: openQCM. https://openqcm.com/scientific-papers/polyethyleneimine-modified-quartz-crystal-microbalance-and-its-characteristics-for-detecting-acetic-acid
- Polymer Brushes and Grafted Polymers: AI/ML-Driven Synthesis, Simulation, and Characterization towards autonomous SDL — Rigoberto C. Advincula, Jihua Chen, *Open MIND* (2026). DOI: 10.48550/arXiv.2602.14362. Instrument: openQCM. https://openqcm.com/scientific-papers/polymer-brushes-and-grafted-polymers-ai-ml-driven-synthesis-simulation-and-characterization-towards-autonomous-sdl
- Polymère à empreinte moléculaire pour la reconnaissance et l’immobilisation des bactéries photosynthétiques — Christos Galanos, *HAL (Le Centre pour la Communication Scientifique Directe)* (2024). Instrument: openQCM. https://openqcm.com/scientific-papers/polymere-a-empreinte-moleculaire-pour-la-reconnaissance-et-limmobilisation-des-bacteries-photosynthetiques
- Polyvinyl acetate film-based quartz crystal microbalance for the detection of benzene, toluene, and xylene vapors in air — Aditya Rianjanu, Siti A Hasanah, Doni B Nugroho et al., *Chemosensors* (2019). Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/polyvinyl-acetate-film-based-quartz-crystal-microbalance-for-the-detection-of-benzene-toluene-and-xylene-vapors-in-air
- Porous Cellulose Thin Films as Sustainable and Effective Antimicrobial Surface Coatings — Shaojun Qi, Ioannis Kiratzis, Pavan Adoni et al., *ACS Applied Materials &amp; Interfaces* (2023). DOI: 10.1021/acsami.2c23251. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/porous-cellulose-thin-films-as-sustainable-and-effective-antimicrobial-surface-coatings
- Portable DNA Probe Detector and a New Dry-QCM Approach for SARS-CoV-2 Detection — Dhanunjaya Munthala, Thita Sonklin, Narong Chanlek et al., *Technologies* (2025). DOI: 10.3390/technologies13030114. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/portable-dna-probe-detector-and-a-new-dry-qcm-approach-for-sars-cov-2-detection
- Postannealing-Driven Optimization of Humidity Response in Densely and Loosely Grafted Polymer Films — Katerina Lazarova, Silvia Bozhilova, Martina Docheva et al., *Gels* (2026). DOI: 10.3390/gels12060515. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/postannealing-driven-optimization-of-humidity-response-in-densely-and-loosely-grafted-polymer-films
- Preparation and Characterization of Affordable Experimental Sensors Array for Particulate Matter Sensing — Majid Javadzadehkalkhoran, Levent Trabzon, *Research Square* (2023). DOI: 10.21203/rs.3.rs-3654975/v1. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/preparation-and-characterization-of-affordable-experimental-sensors-array-for-particulate-matter-sensing
- Preparation and Characterization of Affordable Experimental Setup for Particulate Matter Sensing — Majid Javadzadehkalkhoran, Levent Trabzon, *Sensing and Imaging* (2024). DOI: 10.1007/s11220-024-00479-0. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/preparation-and-characterization-of-affordable-experimental-setup-for-particulate-matter-sensing
- Preparation and characterization of metal decorated metal oxide materials and study of porous structures — Daniele Paradiso (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/preparation-and-characterization-of-metal-decorated-metal-oxide-materials-and-study-of-porous-structures
- Preparation of Well-Defined Fluorescent Nanoplastic Particles by Confined Impinging Jet Mixing — Livius F Muff, Sandor Balog, Jozef Adamcik et al., *Environmental Science &amp; Technology* (2023). DOI: 10.1557/s43579-023-00492-6. Instrument: openQCM. https://openqcm.com/scientific-papers/preparation-of-well-defined-fluorescent-nanoplastic-particles-by-confined-impinging-jet-mixing
- Prior Guided Multi-Scale Dynamic Deblurring Network for Diffraction Image Restoration in Droplet Measurement — Qiangqiang Liu, Jiankui Chen, Hua Yang et al., *IEEE Transactions on Instrumentation and Measurement* (2023). DOI: 10.1109/TIM.2023.3343743. Instrument: openQCM. https://openqcm.com/scientific-papers/prior-guided-multi-scale-dynamic-deblurring-network-for-diffraction-image-restoration-in-droplet-measurement
- Příprava aminových plazmových polymerů a jejich interakce s ECM proteiny — Pavel Dvořák (2019). Instrument: openQCM. https://openqcm.com/scientific-papers/priprava-aminovych-plazmovych-polymeru-a-jejich-interakce-s-ecm-proteiny
- Probing fibronectin adsorption on chemically defined surfaces by means of single molecule force microscopy — Evangelos Liamas, Richard A Black, Paul A Mulheran et al., *Scientific Reports* (2020). DOI: 10.1038/s41598-020-72617-z. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/probing-fibronectin-adsorption-on-chemically-defined-surfaces-by-means-of-single-molecule-force-microscopy
- Probing of Interactions of Magnetite Nanoparticles Coated with Native and Aminated Starch with a DPPC Model Membrane — Emilia Piosik, Aleksandra Zaryczniak, Kinga Mylkie et al., *International journal of molecular sciences* (2021). DOI: 10.3390/ijms22115939. Instrument: openQCM 1. https://openqcm.com/scientific-papers/probing-of-interactions-of-magnetite-nanoparticles-coated-with-native-and-aminated-starch-with-a-dppc-model-membrane
- Produção de proteínas heterólogas em microalga — Jo Vitor Dutra Molino, *Zenodo (CERN European Organization for Nuclear Research)* (2017). DOI: 10.5281/zenodo.1222094. Instrument: openQCM. https://openqcm.com/scientific-papers/producao-de-proteinas-heterologas-em-microalga
- Protein Corona Engineering of Lipid Nanoparticles Enables Efficient Functional Gene Silencing in the Liver — Naths G. Sukubo, Serena Renzi, Martina B. Violatto et al., *Small* (2026). DOI: 10.1002/smll.75537. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/protein-corona-engineering-of-lipid-nanoparticles-enables-efficient-functional-gene-silencing-in-the-liver
- Prototyping and Early Validation of an Integrated, Electrochemical and Mass Three-sensor Array for Dengue Detection. — Ahmad Anwar Zainuddin, Mohd Afiq Mohd Asri, Cyril Guines et al., *BIODEVICES* (2022). Instrument: openQCM 1. https://openqcm.com/scientific-papers/prototyping-and-early-validation-of-an-integrated-electrochemical-and-mass-three-sensor-array-for-dengue-detection
- pyQCM-BraTaDio: A tool for visualization, data mining, and modelling of Quartz crystal microbalance with dissipation data — Brandon M. Pardi, Syeda Tajin Ahmed, Silvia Jonguitud Flores et al., *bioRxiv* (2023). DOI: 10.1101/2023.12.15.571789. Instrument: openQCM. https://openqcm.com/scientific-papers/pyqcm-bratadio-a-tool-for-visualization-data-mining-and-modelling-of-quartz-crystal-microbalance-with-dissipation-data
- QCM anal`yza nanočástic a molekul — Xie Chen, *České vysoké učení technické v Praze* (2024). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/qcm-analyza-nanocastic-a-molekul
- QCM Genosensor for Detection of Golden Mosaic-Resistant Transgenic Common Beans in Non-Amplified Samples — Isabella C. S. Nascimento, Andressa M. Souza, Andrea P. Parente et al., *Preprints* (2026). DOI: 10.20944/preprints202602.1170.v1. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/qcm-genosensor-for-detection-of-golden-mosaic-resistant-transgenic-common-beans-in-non-amplified-samples
- QCM sensor sensitivity analysis of silver electrodes coated with lipid membrane oleyl alcohol toward NaCL and HCL — Auliya Rahmatul Ummah, Imam Tazi, Muthmainnah Muthmainnah, *Jurnal Neutrino: Jurnal Fisika dan Aplikasinya* (2019). DOI: 10.18860/neu.v11i2.6597. Instrument: openQCM 1. https://openqcm.com/scientific-papers/qcm-sensor-sensitivity-analysis-of-silver-electrodes-coated-with-lipid-membrane-oleyl-alcohol-toward-nacl-and-hcl
- QCM sensörlerinin partikül madde konsantrasyonunu ölçmek için geliştirilmesi — Majid Javadzadehkalhoran, *Istanbul Technical University* (2024). Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/qcm-sensorlerinin-partikul-madde-konsantrasyonunu-olcmek-icin-gelistirilmesi
- QCM-based immunosensor for rapid detection of Salmonella Typhimurium in food — Andrea Fulgione, Martina Cimafonte, Bartolomeo Della Ventura et al., *Scientific reports* (2018). DOI: 10.1038/s41598-018-34285-y. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/qcm-based-immunosensor-for-rapid-detection-of-salmonella-typhimurium-in-food
- Quantification of Methane in Water at Parts Per Billion Sensitivity Using a Metal–Organic Framework-Functionalized Quartz Crystal Resonator — Jaskaran Singh Malhotra, Clara Dávila Duarte, Per Reichert et al., *ACS Applied Nano Materials* (2025). DOI: 10.1021/acsanm.4c06883. Instrument: openQCM NEXT, openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/quantification-of-methane-in-water-at-parts-per-billion-sensitivity-using-a-metal-organic-framework-functionalized-quartz-crystal-resonator
- Quantitative and qualitative assessment methods for biofilm growth: a mini-review — Christina Wilson, Rachel Lukowicz, Stefan Merchant et al., *Research &amp; reviews. Journal of engineering and technology* (2017). Instrument: openQCM. https://openqcm.com/scientific-papers/quantitative-and-qualitative-assessment-methods-for-biofilm-growth-a-mini-review
- Quartz crystal microbalance (QCM) for the detection of explosive vapor–measurements and simulations — Ali Hraybi, Imad Mougharbel, Karim Kassem et al., *2017 First International Conference on Landmine: Detection, Clearance and Legislations (LDCL)* (2017). DOI: 10.1109/ldcl.2017.7976933. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-qcm-for-the-detection-of-explosive-vapor-measurements-and-simulations
- Quartz Crystal Microbalance (QCM)-Based Portable System for Visualizing Reaction Kinetics in Secondary Chemistry Education — Haojie Zhao, Xiangxin Li, Siyu Lei et al., *Journal of Chemical Education* (2025). DOI: 10.1021/acs.jchemed.5c00525. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-qcm-based-portable-system-for-visualizing-reaction-kinetics-in-secondary-chemistry-education
- Quartz Crystal Microbalance Assay of Clinical Calcinosis Samples and Their Synthetic Models Differentiates the Efficacy of Chelation-Based Treatments — Fan Fei, Andrzej Gallas, Yun-Chuan Chang et al., *ACS Applied Materials & Interfaces* (2017). DOI: 10.1021/acsami.7b08423. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-assay-of-clinical-calcinosis-samples-and-their-synthetic-models-differentiates-the-efficacy-of-chelation-based-treatments
- Quartz crystal microbalance coated by PAN nanofibers and PEDOT: PSS for humidity sensor — Shidiq Nur Hidayat, Trisna Julian, Aditya Rianjanu et al., *2017 International Seminar on Sensors, Instrumentation, Measurement and Metrology (ISSIMM)* (2017). Instrument: openQCM 1. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-coated-by-pan-nanofibers-and-pedot-pss-for-humidity-sensor
- Quartz Crystal Microbalance Coated with a Polyvinylpyrrolidone Microfiber Active Layer as a High-Performance Acetic Acid Gas Sensor — Laila Katriani, Rizky Aflaha, Chlara Naren Maharani et al., *Langmuir* (2025). DOI: 10.1021/acs.langmuir.4c04474. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-coated-with-a-polyvinylpyrrolidone-microfiber-active-layer-as-a-high-performance-acetic-acid-gas-sensor
- Quartz crystal microbalance coated with PEDOT–PSS/PVA nanofiber for a high-performance humidity sensor — Trisna Julian, Aditya Rianjanu, Shidiq Nur Hidayat et al., *Journal of Sensors and Sensor Systems* (2019). DOI: 10.5194/jsss-8-243-2019. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-coated-with-pedot-pss-pva-nanofiber-for-a-high-performance-humidity-sensor
- Quartz Crystal Microbalance Coated with Polyacrylonitrile/Nickel Nanofibers for High-Performance Methanol Gas Detection — Yadi Mulyadi Rohman, Riris Sukowati, Aan Priyanto et al., *ACS Omega* (2023). DOI: 10.1021/acsomega.3c00760. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-coated-with-polyacrylonitrile-nickel-nanofibers-for-high-performance-methanol-gas-detection
- Quartz crystal microbalance electronic interfacing systems: A review — Abdulrahman Alassi, Mohieddine Benammar, Dan Brett, *Sensors* (2017). DOI: 10.3390/s17122799. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-electronic-interfacing-systems-a-review
- Quartz crystal microbalance experiments reveal structural changes in the Staphylococcus aureus biofilm in the presence of savirin — Emilia M. Hudzik, Andrew J. Parnell, Jordan Petkov et al., *Results in Surfaces and Interfaces* (2025). DOI: 10.1016/j.rsurfi.2025.100535. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-experiments-reveal-structural-changes-in-the-staphylococcus-aureus-biofilm-in-the-presence-of-savirin
- Quartz crystal microbalance humidity sensors integrated with hydrophilic polyethyleneimine-grafted polyacrylonitrile nanofibers — Aditya Rianjanu, Trisna Julian, Shidiq Nur Hidayat et al., *Sensors and Actuators B: Chemical* (2020). DOI: 10.1016/j.snb.2020.128286. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-humidity-sensors-integrated-with-hydrophilic-polyethyleneimine-grafted-polyacrylonitrile-nanofibers
- Quartz Crystal Microbalance Modeling for Biocompatible Thin Films Studies — Rodolphe Heyd, Julie Fichot, Christophe Josserand et al., *A Booklet on Piezoelectricity - Essential Principles, Modeling and Emerging Technologies for Energy Harvesting and Sensing* (2025). DOI: 10.5772/intechopen.1013005. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-modeling-for-biocompatible-thin-films-studies
- Quartz crystal microbalance sensors: new tools for the assessment of organic threats to the quality of water — Bartolomeo Della Ventura, Marco Mauro, Raffaele Battaglia et al., *ICT for Smart Water Systems: Measurements and Data Science* (2019). DOI: 10.1007/698_2019_390. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-sensors-new-tools-for-the-assessment-of-organic-threats-to-the-quality-of-water
- Quartz Crystal Microbalance Study in Controlled Environment for Particulate Matter Sensing — Ettore Massera, Luigi Barretta, Maria Lucia Miglietta et al., *Sensors and Microsystems: Proceedings of AISEM 2022* (2023). DOI: 10.1007/978-3-031-25706-3_21. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-study-in-controlled-environment-for-particulate-matter-sensing
- Quartz crystal Microbalance with dissipation monitoring for biomedical applications: Open source and low cost prototype with active temperature control — Gabriel G. Muñoz, Martin Millicovsky, Juan Manuel Reta et al., *HardwareX* (2023). DOI: 10.1016/j.ohx.2023.e00416. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-with-dissipation-monitoring-for-biomedical-applications-open-source-and-low-cost-prototype-with-active-temperature-control
- Quartz crystal microbalance with thermally-controlled surface adhesion for an efficient fine dust collection and sensing — Il Ryu Jang, Soon In Jung, Gunhee Lee et al., *Journal of Hazardous Materials* (2022). DOI: 10.1016/j.jhazmat.2021.127560. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-with-thermally-controlled-surface-adhesion-for-an-efficient-fine-dust-collection-and-sensing
- Quartz crystal microbalance-based biosensing of hepatitis B antigen using a molecularly imprinted polydopamine film — Hui Jean Lim, Tridib Saha, Beng Ti Tey et al., *Talanta* (2022). DOI: 10.1016/j.talanta.2022.123659. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-based-biosensing-of-hepatitis-b-antigen-using-a-molecularly-imprinted-polydopamine-film
- Quartz crystal microbalance-based biosensing of proteins using molecularly imprinted polydopamine sensing films: Interplay between protein characteristics and molecular imprinting effect — Hui Jean Lim, Tridib Saha, Beng Ti Tey et al., *Surfaces and Interfaces* (2023). DOI: 10.1016/j.surfin.2023.102904. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-based-biosensing-of-proteins-using-molecularly-imprinted-polydopamine-sensing-films-interplay-between-protein-characteristics-and-molecular-imprinting-effect
- Quartz Crystal Microbalance-Based Biosensor for Rapid and Ultrasensitive SARS-CoV-2 Detection — Sahera Saleh, Habib Alkalamouni, Karen Antar et al., *Journal of Pharmaceutical and Biomedical Analysis Open* (2025). DOI: 10.1016/j.jpbao.2025.100071. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-based-biosensor-for-rapid-and-ultrasensitive-sars-cov-2-detection
- Quartz crystal microbalance-coated cellulose acetate nanofibers overlaid with chitosan for detection of acetic anhydride vapor — Doni B Nugroho, Aditya Rianjanu, Kuwat Triyana et al., *Results in Physics* (2019). DOI: 10.1016/j.rinp.2019.102680. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/quartz-crystal-microbalance-coated-cellulose-acetate-nanofibers-overlaid-with-chitosan-for-detection-of-acetic-anhydride-vapor
- Quartz crystal microbalances functionalized with citric acid-doped polyvinyl acetate nanofibers for ammonia sensing — Roto Roto, Aditya Rianjanu, Annisa Rahmawati et al., *ACS Applied Nano Materials* (2020). DOI: 10.1021/acsanm.0c00896. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-microbalances-functionalized-with-citric-acid-doped-polyvinyl-acetate-nanofibers-for-ammonia-sensing
- Quartz Crystal Nanobalance-Dissipation Based Simulation Model as Pre-Clinical Modality for Blood Coagulation Behavior for Evaluation of the Risk of Thrombosis — Min Jung Kim, Tae In Hwang, Chan Hee Park et al., *Journal of Nanoscience and Nanotechnology* (2020). DOI: 10.1166/jnn.2020.17675. Instrument: openQCM. https://openqcm.com/scientific-papers/quartz-crystal-nanobalance-dissipation-based-simulation-model-as-pre-clinical-modality-for-blood-coagulation-behavior-for-evaluation-of-the-risk-of-thrombosis
- Rapid response and high-enhancement sensitivity formic acid gas sensor based on electrospun polyimide/polyvinylpyrrolidone composite nanofibers — Laila Katriani, Salsabila Mei Cahyani, Adha Nur Rahman Fauzi et al., *Surfaces and Interfaces* (2026). DOI: 10.1016/j.surfin.2026.109541. Instrument: openQCM. https://openqcm.com/scientific-papers/rapid-response-and-high-enhancement-sensitivity-formic-acid-gas-sensor-based-on-electrospun-polyimide-polyvinylpyrrolidone-composite-nanofibers
- Rapid SARS-CoV-2 Detection Using High-Sensitivity Thickness Shear Mode Sensors — Sahera A. Saleh, Habib Alkalamouni, Karen Antar et al., *bioRxiv (Cold Spring Harbor Laboratory)* (2024). DOI: 10.1101/2024.05.22.594713. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/rapid-sars-cov-2-detection-using-high-sensitivity-thickness-shear-mode-sensors
- Rapid Screening of Vapor Uptake by Ultra-Thin Polymer Films Using Surface Plasmon Resonance and Quartz Crystal Microbalance with Dissipation Monitoring — Ana Corres, Jose Ignacio Santos, Alba González et al., *Macromolecular Materials and Engineering* (2025). DOI: 10.1002/mame.202400405. Instrument: openQCM. https://openqcm.com/scientific-papers/rapid-screening-of-vapor-uptake-by-ultra-thin-polymer-films-using-surface-plasmon-resonance-and-quartz-crystal-microbalance-with-dissipation-monitoring
- Rapid Whole Blood Clot Retraction Assay on Quartz Crystal Microbalance — Vitaly Efremov, Ramji S Lakshmanan, James O'Donnell et al., *IEEE Sensors Letters* (2021). DOI: 10.1109/lsens.2020.3049063. Instrument: openQCM. https://openqcm.com/scientific-papers/rapid-whole-blood-clot-retraction-assay-on-quartz-crystal-microbalance
- Real-time kinetic analysis and detection of glycated hemoglobin A1c using a quartz crystal microbalance-based aptasensor — Yossawadee Sriondee, Pasara Vijitvarasan, Arunothai Rattanachata et al., *Analytical Methods* (2024). DOI: 10.1039/D3AY01842C. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/real-time-kinetic-analysis-and-detection-of-glycated-hemoglobin-a1c-using-a-quartz-crystal-microbalance-based-aptasensor
- Real-world evaluation of a QCM-based biosensor for exhaled air — Augusto Juste-Dolz, William Teixeira, Yeray Pallás-Tamarit et al., *Analytical and Bioanalytical Chemistry* (2024). DOI: 10.1007/s00216-024-05407-5. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/real-world-evaluation-of-a-qcm-based-biosensor-for-exhaled-air
- Recent trends in dengue detection methods using biosensors — Ahmad Anwar Zainuddin, Anis Nurashikin Nordin, Rosminazuin Ab Rahim, *IIUM Engineering Journal* (2018). DOI: 10.31436/iiumej.v19i2.931. Instrument: openQCM. https://openqcm.com/scientific-papers/recent-trends-in-dengue-detection-methods-using-biosensors
- Resolving Nanoslip, Solvation Inertia, and Charge Dynamics at Vibrating Solid–Liquid Interface — Nikhil Bhalla, Yeeun Song, Ju-Yeon Jo et al., *Small* (2025). DOI: 10.1002/smll.202505067. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/resolving-nanoslip-solvation-inertia-and-charge-dynamics-at-vibrating-solid-liquid-interface
- Resonator-Based Air Microfluidic Sensing Systems for Monitoring Airborne Particulate Matter — Mandana Hajizadehmotlagh, *University of Illinois at Chicago* (2021). Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/resonator-based-air-microfluidic-sensing-systems-for-monitoring-airborne-particulate-matter
- Revealing the interfacial dynamics of Escherichia coli growth and biofilm formation with integrated micro- and macro-scale approaches — Haneum Kim, Eunseo Jeon, Jeongmi Park et al., *Applied Rheology* (2025). DOI: 10.1515/arh-2025-0031. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/revealing-the-interfacial-dynamics-of-escherichia-coli-growth-and-biofilm-formation-with-integrated-micro-and-macro-scale-approaches
- Revealing the role of epithelial mechanics and macrophage clearance during pulmonary epithelial injury recovery in the presence of carbon nanotubes — Dedy Septiadi, Wildan Abdussalam, Laura Rodriguez-Lorenzo et al., *Advanced Materials* (2018). DOI: 10.1002/adma.201806181. Instrument: openQCM 1. https://openqcm.com/scientific-papers/revealing-the-role-of-epithelial-mechanics-and-macrophage-clearance-during-pulmonary-epithelial-injury-recovery-in-the-presence-of-carbon-nanotubes
- Reversible oxide formation during cycling of Si anodes — Tobias Kohler, Efi Hadjixenophontos, Yug Joshi et al., *Nano Energy* (2021). DOI: 10.1016/j.nanoen.2021.105886. Instrument: openQCM. https://openqcm.com/scientific-papers/reversible-oxide-formation-during-cycling-of-si-anodes
- Reversible sensing of heavy metal ions using lysine modified oligopeptides on porous silicon and gold — Jane Politi, Principia Dardano, Alessandro Caliò et al., *Sensors and Actuators B: Chemical* (2017). DOI: 10.1016/j.snb.2016.12.132. Instrument: openQCM. https://openqcm.com/scientific-papers/reversible-sensing-of-heavy-metal-ions-using-lysine-modified-oligopeptides-on-porous-silicon-and-gold
- Rheology of the Electric Double Layer in Electrolyte Solutions — Riccardo Funari, Atsushi Matsumoto, John R. de Bruyn et al., *Analytical Chemistry* (2020). DOI: 10.1021/acs.analchem.0c00475. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/rheology-of-the-electric-double-layer-in-electrolyte-solutions
- Rheology of the Electric Double Layer In Ionic Liquid Solutions: Effects of Ion Concentration and Anion Structures — Atsushi Matsumoto, Ryota Yoshizawa, Riccardo Funari et al., *Available at SSRN 4096144* (2022). DOI: 10.2139/ssrn.4096144. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/rheology-of-the-electric-double-layer-in-ionic-liquid-solutions-effects-of-ion-concentration-and-anion-structures
- Room-temperature ethylene glycol sensor based on cuprous oxide/MXene films — Sepehr Samiei, Asadollah Kalantarian, Azam Iraji zad et al., *Nature: Scientific Reports* (2025). DOI: 10.1038/s41598-025-12019-1. Instrument: openQCM 1. https://openqcm.com/scientific-papers/room-temperature-ethylene-glycol-sensor-based-on-cuprous-oxide-mxene-films
- Room-temperature monitoring of CH4 and CO2 using a metal-organic framework-based QCM sensor showing inherent analyte discrimination — Jaskaran Singh Malhotra, Mariusz Kubus, Kasper Steen Pedersen et al., *ChemRxiv* (2023). DOI: 10.26434/chemrxiv-2023-djhp2. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/room-temperature-monitoring-of-ch4-and-co2-using-a-metal-organic-framework-based-qcm-sensor-showing-inherent-analyte-discrimination
- Room-temperature ppb-level trimethylamine gas sensors functionalized with citric acid-doped polyvinyl acetate nanofibrous mats — Aditya Rianjanu, Rizky Aflaha, Nur Istiqomah Khamidy et al., *Materials advances* (2021). DOI: 10.1039/d1ma00152c. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/room-temperature-ppb-level-trimethylamine-gas-sensors-functionalized-with-citric-acid-doped-polyvinyl-acetate-nanofibrous-mats
- Sample volume as a key design parameter in affinity-based biosensors — Daan Beijersbergen, Jérôme Charmet, *arXiv (Cornell University)* (2025). DOI: 10.48550/arXiv.2512.21997. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/sample-volume-as-a-key-design-parameter-in-affinity-based-biosensors
- Science artisans and open science hardware — Denisa Kera, *Bulletin of Science, Technology &amp; Society* (2017). DOI: 10.1177/0270467618774978. Instrument: openQCM. https://openqcm.com/scientific-papers/science-artisans-and-open-science-hardware
- Secondary organic aerosol from biomass burning phenolic compounds and nitrate radicals can be highly viscous over a wide relative humidity range — Sepehr Nikkho, Bin Bai, Fabian Mahrt et al., *ChemRxiv* (2024). DOI: 10.26434/chemrxiv-2024-vrc4n. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/secondary-organic-aerosol-from-biomass-burning-phenolic-compounds-and-nitrate-radicals-can-be-highly-viscous-over-a-wide-relative-humidity-range
- Selective Adsorption and Separation of C 6 Hydrocarbons: The Role of Structural Flexibility and Functionalization in Zeolitic Imidazolate Frameworks — Kevin Dedecker, Martin Drobek, Anne Julbe, *RSC Applied Interfaces* (2024). DOI: 10.1039/D4LF00388H. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/selective-adsorption-and-separation-of-c-6-hydrocarbons-the-role-of-structural-flexibility-and-functionalization-in-zeolitic-imidazolate-frameworks
- Selective adsorption and separation of C 6 hydrocarbons: the role of structural flexibility and functionalization in zeolitic imidazolate frameworks — Kevin Dedecker, Martin Drobek, Anne Julbe, *RSC Applied Interfaces* (2025). DOI: 10.1039/D4LF00388H. Instrument: openQCM 1. https://openqcm.com/scientific-papers/selective-adsorption-and-separation-of-c-6-hydrocarbons-the-role-of-structural-flexibility-and-functionalization-in-zeolitic-imidazolate-frameworks-2
- Selective and sensitive sensors based on molecularly imprinted poly (vinylidene fluoride) for determination of pesticides and chemical threat agent simulants — Xuan Hao Lin, Shalen Xue Ling Aik, Jacelyn Angkasa et al., *Sensors and Actuators B: Chemical* (2018). DOI: 10.1016/j.snb.2017.11.070. Instrument: openQCM. https://openqcm.com/scientific-papers/selective-and-sensitive-sensors-based-on-molecularly-imprinted-poly-vinylidene-fluoride-for-determination-of-pesticides-and-chemical-threat-agent-simulants
- Selective Aptasensor for Trinitrotoluene Detection: Comparison of the Detecting Performances from Liquid and Vapor Phases — Canan Armutcu, Tunca Karasu, Sena Pişkin et al., *Colloids and Surfaces A: Physicochemical and Engineering Aspects* (2023). DOI: 10.1016/j.colsurfa.2023.132258. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/selective-aptasensor-for-trinitrotoluene-detection-comparison-of-the-detecting-performances-from-liquid-and-vapor-phases
- Sensing performance and DFT investigation of methylamine gas detection using SnO₂-decorated PEO nanofiber-coated quartz crystal microbalance — Roto Roto, Rizky Aflaha, Arif Lukmantoro et al., *Microchemical Journal* (2026). DOI: 10.1016/j.microc.2026.119753. Instrument: openQCM. https://openqcm.com/scientific-papers/sensing-performance-and-dft-investigation-of-methylamine-gas-detection-using-sno%e2%82%82-decorated-peo-nanofiber-coated-quartz-crystal-microbalance
- Sensitive formaldehyde detection with QCM sensor based on PAAm/MWCNTs and PVAm/MWCNTs — Lihui Feng, Liying Feng, Qi Li et al., *ACS omega* (2021). DOI: 10.1021/acsomega.0c05987. Instrument: openQCM 1. https://openqcm.com/scientific-papers/sensitive-formaldehyde-detection-with-qcm-sensor-based-on-paam-mwcnts-and-pvam-mwcnts
- Sensitivity prediction and analysis of nanofiber-based gas sensors using solubility and vapor pressure parameters — Aditya Rianjanu, Shidiq Nur Hidayat, Nursidik Yulianto et al., *Japanese Journal of Applied Physics* (2021). DOI: 10.35848/1347-4065/ac1a8e. Instrument: openQCM. https://openqcm.com/scientific-papers/sensitivity-prediction-and-analysis-of-nanofiber-based-gas-sensors-using-solubility-and-vapor-pressure-parameters
- Signal amplification of a quartz crystal microbalance immunosensor by gold nanoparticles-polyethyleneimine for hepatitis B biomarker detection — Zahra Saffari, Reza Ahangari Cohan, Mina Sepahi et al., *Scientific Reports* (2023). DOI: 10.1038/s41598-023-48766-2. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/signal-amplification-of-a-quartz-crystal-microbalance-immunosensor-by-gold-nanoparticles-polyethyleneimine-for-hepatitis-b-biomarker-detection
- Single-use microfluidic device for purification and concentration of environmental DNA from river water — Joana Carvalho, Lorena Diéguez, Andrey Ipatov et al., *Talanta* (2021). DOI: 10.1016/j.talanta.2021.122109. Instrument: openQCM. https://openqcm.com/scientific-papers/single-use-microfluidic-device-for-purification-and-concentration-of-environmental-dna-from-river-water
- Singlet oxygen photo-production by perylene bisimide derivative Langmuir-Schaefer films for photodynamic therapy applications — Paola Semeraro, Zois Syrgiannis, Simona Bettini et al., *Journal of Colloid and Interface Science* (2019). DOI: 10.1016/j.jcis.2019.06.037. Instrument: openQCM 1. https://openqcm.com/scientific-papers/singlet-oxygen-photo-production-by-perylene-bisimide-derivative-langmuir-schaefer-films-for-photodynamic-therapy-applications
- Site-specific imprinting of dengue virus non-structural 1 antigen on a polydopamine-based sensing film for early detection and prognosis of dengue — Hui Jean Lim, Tridib Saha, Chien Wei Ooi, *Talanta* (2024). DOI: 10.1016/j.talanta.2023.125376. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/site-specific-imprinting-of-dengue-virus-non-structural-1-antigen-on-a-polydopamine-based-sensing-film-for-early-detection-and-prognosis-of-dengue
- Smart identification system of surface water contamination by an innovative biosensor network — Armando Di Nardo, Giovanni Francesco Santonastaso, Raffaele Battaglia et al., *Conference proceedings* (2015). Instrument: openQCM 1. https://openqcm.com/scientific-papers/smart-identification-system-of-surface-water-contamination-by-an-innovative-biosensor-network
- Smartphone-based pathogen detection using concurrent monitoring of resonant frequency and optical fluorescence — Hyun Jung Min, Hansel A Mina, Amanda J Deering et al., *Sensing for Agriculture and Food Quality and Safety XV* (2023). DOI: 10.1117/12.2665235. Instrument: openQCM. https://openqcm.com/scientific-papers/smartphone-based-pathogen-detection-using-concurrent-monitoring-of-resonant-frequency-and-optical-fluorescence
- Sniff Species: SURMOF-Based Sensor Array Discriminates Aromatic Plants Beyond the Genus Level. Chemosensors 2021, 9, 171 — S Okur, C Li, Z Zhang et al., *Chemosensors* (2021). DOI: 10.3390/chemosensors9070171. Instrument: openQCM 1. https://openqcm.com/scientific-papers/sniff-species-surmof-based-sensor-array-discriminates-aromatic-plants-beyond-the-genus-level-chemosensors-2021-9-171
- Solution Atomic Layer Deposition of Smooth, Continuous, Crystalline Metal–Organic Framework Thin Films — Maïssa KS Barr, Soheila Nadiri, Dong-Hui Chen et al., *Chemistry of Materials* (2022). DOI: 10.1021/acs.chemmater.2c01102. Instrument: openQCM 1. https://openqcm.com/scientific-papers/solution-atomic-layer-deposition-of-smooth-continuous-crystalline-metal-organic-framework-thin-films
- Solvent effects of N,N-dimethylformamide and methanol on mass spectrometry imaging by tapping-mode scanning probe electrospray ionization — Yoichi Otsuka, Nijiho Ote, Mengze Sun et al., *The Analyst* (2023). DOI: 10.1039/d2an01953a. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/solvent-effects-of-nn-dimethylformamide-and-methanol-on-mass-spectrometry-imaging-by-tapping-mode-scanning-probe-electrospray-ionization
- Solvent free deposition of Cu on nanocubes of MgO — Daniele Paradiso, JZ Larese, *The Journal of Physical Chemistry C* (2020). DOI: 10.1021/acs.jpcc.0c01790. Instrument: openQCM. https://openqcm.com/scientific-papers/solvent-free-deposition-of-cu-on-nanocubes-of-mgo
- Sponsored libre research agreements to create free and open source software and hardware — Joshua M Pearce, *Inventions* (2018). DOI: 10.3390/inventions3030044. Instrument: openQCM. https://openqcm.com/scientific-papers/sponsored-libre-research-agreements-to-create-free-and-open-source-software-and-hardware
- Stability evaluation of quartz crystal microbalances coated with polyvinyl acetate nanofibrous mats as butanol vapor sensors — Aditya Rianjanu, Eka Nurfani, Muhamad F Arif et al., *Materials Today Communications* (2021). DOI: 10.1016/j.mtcomm.2020.101770. Instrument: openQCM. https://openqcm.com/scientific-papers/stability-evaluation-of-quartz-crystal-microbalances-coated-with-polyvinyl-acetate-nanofibrous-mats-as-butanol-vapor-sensors
- Steering diffusion selectivity of chemical isomers within aligned nanochannels of metal-organic framework thin film — Ritesh Haldar, Tanmoy Maity, Susmita Sarkar et al., *Research Square* (2024). DOI: 10.21203/rs.3.rs-4046811/v1. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/steering-diffusion-selectivity-of-chemical-isomers-within-aligned-nanochannels-of-metal-organic-framework-thin-film
- Steering diffusion selectivity of chemical isomers within aligned nanochannels of metal-organic framework thin film — Tanmoy Maity, Susmita Sarkar, Susmita Kundu et al., *Nature Communications* (2024). DOI: 10.1038/s41467-024-53207-3. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/steering-diffusion-selectivity-of-chemical-isomers-within-aligned-nanochannels-of-metal-organic-framework-thin-film-2
- Strategies for the Accurate Measurement of the Resonance Frequency in QCM-D Systems via Low-Cost Digital Techniques — Tommaso Addabbo, Ada Fort, Elia Landi et al., *Sensors* (2022). DOI: 10.3390/s22155728. Instrument: openQCM. https://openqcm.com/scientific-papers/strategies-for-the-accurate-measurement-of-the-resonance-frequency-in-qcm-d-systems-via-low-cost-digital-techniques
- Studies of emission processes of polymer additives into water using quartz crystal Microbalance—A case study on organophosphate esters — Linhong Xiao, Ziye Zheng, Knut Irgum et al., *Environmental science &amp; technology* (2020). DOI: 10.1021/acs.est.9b07607. Instrument: openQCM Sensors, openQCM Wi2. https://openqcm.com/scientific-papers/studies-of-emission-processes-of-polymer-additives-into-water-using-quartz-crystal-microbalance-a-case-study-on-organophosphate-esters
- Study of Multichannel QCM Prospects in VOC Detection — Soumik Bhattacharjee, Aliza Aini Md Ralib, Aparna Vyakaranam et al., *Journal of Physics Conference Series* (2021). DOI: 10.1088/1742-6596/1900/1/012020. Instrument: openQCM. https://openqcm.com/scientific-papers/study-of-multichannel-qcm-prospects-in-voc-detection
- Surface-mounted metal-organic framework for the adsorption and sensing of monoaromatic pollutants in water — Per Reichert, Jaskaran Singh Malhotra, Deepthy Krishnan et al., *ChemRxiv* (2025). DOI: 10.26434/chemrxiv-2025-93k50. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/surface-mounted-metal-organic-framework-for-the-adsorption-and-sensing-of-monoaromatic-pollutants-in-water
- Surface-Mounted Metal-Organic Framework for the Adsorption and Sensing of Monoaromatic Pollutants in Water Using Quartz Crystal Microbalance — Per Reichert, Jaskaran Singh Malhotra, Deepthy Krishnan et al., *Advanced Materials Technologies* (2025). DOI: 10.1002/admt.202501340. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/surface-mounted-metal-organic-framework-for-the-adsorption-and-sensing-of-monoaromatic-pollutants-in-water-using-quartz-crystal-microbalance
- Sustainable and effective antimicrobial surface based on cellulose thin films — Shaojun Qi, Ioannis Kiratzis, Pavan Adoni et al., *arXiv preprint arXiv:2203.14373* (2022). DOI: 10.48550/arxiv.2203.14373. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/sustainable-and-effective-antimicrobial-surface-based-on-cellulose-thin-films
- Swelling behavior in solvent vapor sensing based on Quartz Crystal Microbalance (QCM) Coated Polyacrylonitrile (PAN) nanofiber — A Rianjanu, SN Hidayat, T Julian et al., *IOP Conference Series: Materials Science and Engineering* (2018). DOI: 10.1088/1757-899x/367/1/012020. Instrument: openQCM. https://openqcm.com/scientific-papers/swelling-behavior-in-solvent-vapor-sensing-based-on-quartz-crystal-microbalance-qcm-coated-polyacrylonitrile-pan-nanofiber
- Swelling of poly (methyl acrylate) brushes in acetone vapor — Rens J Horst, Maria Brió Pérez, Rick Cohen et al., *Langmuir* (2020). DOI: 10.1021/acs.langmuir.0c02510. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/swelling-of-poly-methyl-acrylate-brushes-in-acetone-vapor
- Synergistic Stabilization of Oil-in-Water Emulsions Using a Binary Mixture of Chitosan and Hydroxypropyl Cellulose — O. Norvilaite, C. Lindsay, M. J. Rymaruk et al., *Langmuir* (2025). DOI: 10.1021/acs.langmuir.5c03277. Instrument: openQCM NEXT. https://openqcm.com/scientific-papers/synergistic-stabilization-of-oil-in-water-emulsions-using-a-binary-mixture-of-chitosan-and-hydroxypropyl-cellulose
- Synthesis and Characterization of a Nanoscale Hyaluronic Acid-Specific Probe for Magnetic Particle Imaging and Magnetic Resonance Imaging — Harald Kratz, Dietmar Eberbeck, Frank Wiekhorst et al., *Nanomaterials* (2025). DOI: 10.3390/nano15191505. Instrument: openQCM NEXT, openQCM Sensors. https://openqcm.com/scientific-papers/synthesis-and-characterization-of-a-nanoscale-hyaluronic-acid-specific-probe-for-magnetic-particle-imaging-and-magnetic-resonance-imaging
- Synthesis and Characterization of Multi-Walled Carbon Nanotube/Chitosan (Mwcnt/Cs) Composite as a Sensing Layer on Quartz Crystal Microbalance (Qcm) for Detection of Volatile Organic Compounds (Vocs) — Mohd Asyraf Mohd Razib, Aisyah Syafiqah Mahadi, Aliza Aini Md Ralib et al., *SSRN Electronic Journal* (2024). DOI: 10.2139/ssrn.4727417. Instrument: openQCM. https://openqcm.com/scientific-papers/synthesis-and-characterization-of-multi-walled-carbon-nanotube-chitosan-mwcnt-cs-composite-as-a-sensing-layer-on-quartz-crystal-microbalance-qcm-for-detection-of-volatile-organic-compounds-vocs
- Synthesis of a removable cytoprotective exoskeleton by tea polyphenol complexes for living cell encapsulation — Wei Chen, Zhao Yang, Xingchuang Fu et al., *ACS Biomaterials Science &amp; Engineering* (2021). DOI: 10.1021/acsbiomaterials.0c01617. Instrument: openQCM. https://openqcm.com/scientific-papers/synthesis-of-a-removable-cytoprotective-exoskeleton-by-tea-polyphenol-complexes-for-living-cell-encapsulation
- Tea polyphenol cytoprotective exoskeleton for living cells — Wei Chen, Shu Kong, Liping Du et al., *Materials Letters* (2021). DOI: 10.1016/j.matlet.2021.129670. Instrument: openQCM. https://openqcm.com/scientific-papers/tea-polyphenol-cytoprotective-exoskeleton-for-living-cells
- The Effect of Coating the Surface of the Quartz Crystal Microbalance (QCM) Sensor Using Lauric Acid and Myristic Acid Base Materials on the Response of E. coli Bacteria — Miftakhul Mufarokhah, *Universitas Islam Negeri Maulana Malik Ibrahim Malang* (2022). Instrument: openQCM 1. https://openqcm.com/scientific-papers/the-effect-of-coating-the-surface-of-the-quartz-crystal-microbalance-qcm-sensor-using-lauric-acid-and-myristic-acid-base-materials-on-the-response-of-e-coli-bacteria
- The effect of electrospun polymeric fiber active layer on QCM-based sensor toward hydrofluorocarbon gas detection performance — Rizky Aflaha, Annissa Amri Lutfiana, Hasna Pramesti Dewandari et al., *Journal of Materials Science: Materials in Electronics* (2025). DOI: 10.1007/s10854-025-16063-5. Instrument: openQCM. https://openqcm.com/scientific-papers/the-effect-of-electrospun-polymeric-fiber-active-layer-on-qcm-based-sensor-toward-hydrofluorocarbon-gas-detection-performance
- The fabrication of PVP/NiAc nanofiber as a QCM active layer for hazardous vapor detection — Riris Sukowati, Yadi Mulyadi Rohman, Bertolomeus Haryanto Agung et al., *AIP Conference Proceedings* (2025). DOI: 10.1063/5.0242516. Instrument: openQCM. https://openqcm.com/scientific-papers/the-fabrication-of-pvp-niac-nanofiber-as-a-qcm-active-layer-for-hazardous-vapor-detection
- The James Webb Space Telescope: contamination control and materials — Elaine M Stewart, *Systems Contamination: Prediction, Control, and Performance 2018* (2018). DOI: 10.1117/12.2319687. Instrument: openQCM. https://openqcm.com/scientific-papers/the-james-webb-space-telescope-contamination-control-and-materials
- The Opera Instrument: An Advanced Curation Development for Mars Sample Return Organic Contamination Monitoring — MD Fries, WD Fries, FM McCubbin et al., *Lunar and Planetary Science Conference* (2018). Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/the-opera-instrument-an-advanced-curation-development-for-mars-sample-return-organic-contamination-monitoring
- The release and cytotoxicity of novel light inducible antimicrobial coatings after incineration — Philipp Meier, Giacomo Reina, Sandro Lehner et al., *Ecotoxicology and Environmental Safety* (2025). DOI: 10.1016/j.ecoenv.2025.118421. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/the-release-and-cytotoxicity-of-novel-light-inducible-antimicrobial-coatings-after-incineration
- The Role of Cytoskeleton Revealed by Quartz Crystal Microbalance and Digital Holographic Microscopy — Nicoletta Braidotti, Maria Augusta RBF Lima, Michele Zanetti et al., *International Journal of Molecular Sciences* (2022). DOI: 10.3390/ijms23084108. Instrument: openQCM. https://openqcm.com/scientific-papers/the-role-of-cytoskeleton-revealed-by-quartz-crystal-microbalance-and-digital-holographic-microscopy
- The study on interactions of functional surfaces with biological systems — Ivana Víšová, *Digital Repository (National Repository of Grey Literature)* (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/the-study-on-interactions-of-functional-surfaces-with-biological-systems
- Thermally Responsive Polymers for Wearable Calorimeters — Vincenzo Costanza, *California Institute of Technology* (2022). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/thermally-responsive-polymers-for-wearable-calorimeters
- Thermoelectric properties of organic thin films enhanced by π–π stacking — Xintai Wang, Sara Sangtarash, Angelo Lamantia et al., *Journal of Physics: Energy* (2022). DOI: 10.1088/2515-7655/ac55a3. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/thermoelectric-properties-of-organic-thin-films-enhanced-by-pi-pi-stacking
- Thermoelectric properties of ultra-thin film formed by molecular self assembly and Langmuir-Blodgett deposition — Angelo Lamantia (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/thermoelectric-properties-of-ultra-thin-film-formed-by-molecular-self-assembly-and-langmuir-blodgett-deposition
- Towards a MOF e-Nose: A SURMOF sensor array for detection and discrimination of plant oil scents and their mixtures — Salih Okur, Zejun Zhang, Mohammed Sarheed et al., *Sensors and Actuators B: Chemical* (2020). DOI: 10.1016/j.snb.2019.127502. Instrument: openQCM. https://openqcm.com/scientific-papers/towards-a-mof-e-nose-a-surmof-sensor-array-for-detection-and-discrimination-of-plant-oil-scents-and-their-mixtures
- Towards national policy for open source hardware research: The case of Finland — ITS Heikkinen, Hele Savin, Jouni Partanen et al., *Technological Forecasting and Social Change* (2020). DOI: 10.1016/j.techfore.2020.119986. Instrument: openQCM. https://openqcm.com/scientific-papers/towards-national-policy-for-open-source-hardware-research-the-case-of-finland
- Tweaking the Water Rigidity at Noble Metal Interfaces for Enhanced Alkaline Hydrogen Production via myo-Inositol Coating – A Bioinspired Approach — Nandita Mohandas, Alex Joseph, Anusha P. P. et al., *ChemRxiv* (2026). DOI: 10.26434/chemrxiv.15009471/v1. Instrument: openQCM. https://openqcm.com/scientific-papers/tweaking-the-water-rigidity-at-noble-metal-interfaces-for-enhanced-alkaline-hydrogen-production-via-myo-inositol-coating-a-bioinspired-approach
- Ultrasensitive Detection of FKBP12 Using a Synthetic Receptor-Functionalized QCM Nanoplatform — Martina Tozzetti, Maria Raffaella Martina, Giacomo Lucchesi et al., *Advanced Sensor Research* (2025). DOI: 10.1002/adsr.202500053. Instrument: openQCM Wi2. https://openqcm.com/scientific-papers/ultrasensitive-detection-of-fkbp12-using-a-synthetic-receptor-functionalized-qcm-nanoplatform
- Umělá inteligence pro robustní anal`yzu signálu z piezoelektrick`ych biosenzoruu — Frána Lukáš (2021). Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/umela-inteligence-pro-robustni-analyzu-signalu-z-piezoelektrickych-biosenzoruu
- Unraveling the GM1 Specificity of Galectin-1 Binding to Lipid Membranes — Federica Scollo, Waldemar Kulig, Gabriele Nicita et al., *ACS Bio & Med Chem Au* (2025). DOI: 10.1021/acsbiomedchemau.5c00040. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/unraveling-the-gm1-specificity-of-galectin-1-binding-to-lipid-membranes
- Unraveling the liquid gliding on vibrating solid liquid interfaces with dynamic nanoslip enactment — Amir Farokh Payam, Bogyoung Kim, Doojin Lee et al., *Nature Communications* (2022). DOI: 10.1038/s41467-022-34319-0. Instrument: openQCM Sensors. https://openqcm.com/scientific-papers/unraveling-the-liquid-gliding-on-vibrating-solid-liquid-interfaces-with-dynamic-nanoslip-enactment
- Untersuchung der Adhäsion von S. gordonii auf Titan mittels Schwingquarzanalyse — Carmen Mack, *Universitätsbibliothek Tübingen* (2020). DOI: 10.15496/publikation-48821. Instrument: openQCM. https://openqcm.com/scientific-papers/untersuchung-der-adhasion-von-s-gordonii-auf-titan-mittels-schwingquarzanalyse
- Use of Humidity Controlled Quartz Crystal Microbalance with Simultaneous Grazing Incidence Small Angle X-ray Scattering to Investigate the Self-assembly and Energetics of Lipid Thin Films — Jack Macklin, Christian Pfrang, Paul Wady et al., *Langmuir* (2025). DOI: 10.1021/acs.langmuir.4c05158. Instrument: openQCM Q-1, openQCM Sensors. https://openqcm.com/scientific-papers/use-of-humidity-controlled-quartz-crystal-microbalance-with-simultaneous-grazing-incidence-small-angle-x-ray-scattering-to-investigate-the-self-assembly-and-energetics-of-lipid-thin-films
- V (III)-Doped Nickel Oxide-Based Nanocatalysts for Electrochemical Water Splitting: Influence of Phase, Composition, and Doping on the Electrocatalytic Activity — Daniel Böhm, Michael Beetz, Christopher Kutz et al., *Chemistry of Materials* (2020). Instrument: openQCM. https://openqcm.com/scientific-papers/v-iii-doped-nickel-oxide-based-nanocatalysts-for-electrochemical-water-splitting-influence-of-phase-composition-and-doping-on-the-electrocatalytic-activity
- Verification of quartz crystal microbalance array using vector network analyzer and OpenQCM — Ahmad Anwar Zainuddin, Anis Nurashikin Nordin, Rosminazuin Ab Rahim et al., *Indones. J. Electr. Eng. Comput. Sci* (2018). DOI: 10.11591/ijeecs.v10.i1.pp84-93. Instrument: openQCM 1. https://openqcm.com/scientific-papers/verification-of-quartz-crystal-microbalance-array-using-vector-network-analyzer-and-openqcm
- Viscosity Measurement Sensor: A Prototype for a Novel Medical Diagnostic Method Based on Quartz Crystal Resonator — Andrés Miranda-Martínez, Marco Xavier Rivera-González, Michael Zeinoun et al., *Sensors* (2021). DOI: 10.3390/s21082743. Instrument: openQCM Q-1. https://openqcm.com/scientific-papers/viscosity-measurement-sensor-a-prototype-for-a-novel-medical-diagnostic-method-based-on-quartz-crystal-resonator
- Wearable Resonator-Based Respirable Dust Monitor for Underground Coal Mines — Mandana Hajizadehmotlagh, Dorsa Fahimi, Anuj Singhal et al., *IEEE Sensors Journal* (2023). DOI: 10.1109/JSEN.2023.3241601. Instrument: openQCM 1, openQCM Sensors. https://openqcm.com/scientific-papers/wearable-resonator-based-respirable-dust-monitor-for-underground-coal-mines
- π-Quadrupole-driven gate-opening in ZIFs for selective VOC capture — Kevin Dedecker, Martin Drobek, Anne Julbe, *Adsorption* (2025). DOI: 10.1007/s10450-025-00654-z. Instrument: openQCM. https://openqcm.com/scientific-papers/%cf%80-quadrupole-driven-gate-opening-in-zifs-for-selective-voc-capture
- Χαρακτηρισμός νανοσωματιδίων προερχομένων από διεργασίες καύσης και συνθετικών νανοσωματιδίων και αξιολόγηση επιπτώσεων τεχνολογιών ελέγχου — Ελένη Παπαϊωάννου, *National Archive of PhD Theses (Greece)* (2020). DOI: 10.12681/eadd/48278. Instrument: openQCM. https://openqcm.com/scientific-papers/%cf%87%ce%b1%cf%81%ce%b1%ce%ba%cf%84%ce%b7%cf%81%ce%b9%cf%83%ce%bc%cf%8c%cf%82-%ce%bd%ce%b1%ce%bd%ce%bf%cf%83%cf%89%ce%bc%ce%b1%cf%84%ce%b9%ce%b4%ce%af%cf%89%ce%bd-%cf%80%cf%81%ce%bf%ce%b5%cf%81%cf%87

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