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ACS Sensors|March 15, 2021
Automated Miniaturized Digital Microfluidic Antimicrobial Susceptibility Test Using a Chip-Integrated Optical Oxygen SensorWenting Qiu, Stefan NaglAnalytical Chemistry|August 22, 2024
In Situ Live Monitoring of Extracellular Acidosis near Cancer Cells Using Digital Microfluidics with an Integrated Optical pH Sensor FilmWenting Qiu, Xuyan Lin, Stefan NaglMethods in Molecular Biology (Clifton, N.J.)|July 10, 2023
Optical pH Monitoring in Microdroplet Platforms for Live Cell Experiments Using Colloidal SurfactantsXuyan Lin, Wenting Qiu, Steevanson Bayer, et al.ACS Applied Materials & Interfaces|April 3, 2020
Composite Films of CsPbBr<sub>3</sub> Perovskite Nanocrystals in a Hydrophobic Fluoropolymer for Temperature Imaging in Digital MicrofluidicsZhangdi Lu, Yanxiu Li, Wenting Qiu, et al.Methods in Molecular Biology (Clifton, N.J.)|November 30, 2018
Microfluidic Free-Flow Isoelectric Focusing with Real-Time pI DeterminationStefan NaglEngineering in Life Sciences|July 7, 2020
Micro free-flow isoelectric focusing with integrated optical pH sensorsStefan NaglAnalytical and Bioanalytical Chemistry|April 13, 2006
Optical technologies for the read out and quality control of DNA and protein microarraysMichael Schäferling, Stefan NaglMethods in Molecular Biology (Clifton, N.J.)|March 4, 2011
Förster resonance energy transfer methods for quantification of protein-protein interactions on microarraysMichael Schäferling, Stefan NaglLab on a Chip|September 14, 2020
A microfluidic chip for rapid analysis of DNA melting curves for BRCA2 mutation screeningXuyan Lin, Stefan NaglMethods and Applications in Fluorescence|November 18, 2017
Microfluidic platforms employing integrated fluorescent or luminescent chemical sensors: a review of methods, scope and applicationsSimon A Pfeiffer, Stefan NaglPageof 6