Brinza, M.; Schwäke, L.; Zimoch, L.; Strunskus, T.; Pauporté, T.; Viana, B.; Ameri, T.; Adelung, R.; Faupel, F.; Schröder, S.;
et al. Influence of P(V3D3-co-TFE) Copolymer Coverage on Hydrogen Detection Performance of a TiO2 Sensor at Different Relative Humidity for Industrial and Biomedical Applications. Chemosensors 2025, 13, 150.
https://doi.org/10.3390/chemosensors13040150
AMA Style
Brinza M, Schwäke L, Zimoch L, Strunskus T, Pauporté T, Viana B, Ameri T, Adelung R, Faupel F, Schröder S,
et al. Influence of P(V3D3-co-TFE) Copolymer Coverage on Hydrogen Detection Performance of a TiO2 Sensor at Different Relative Humidity for Industrial and Biomedical Applications. Chemosensors. 2025; 13(4):150.
https://doi.org/10.3390/chemosensors13040150
Chicago/Turabian Style
Brinza, Mihai, Lynn Schwäke, Lukas Zimoch, Thomas Strunskus, Thierry Pauporté, Bruno Viana, Tayebeh Ameri, Rainer Adelung, Franz Faupel, Stefan Schröder,
and et al. 2025. "Influence of P(V3D3-co-TFE) Copolymer Coverage on Hydrogen Detection Performance of a TiO2 Sensor at Different Relative Humidity for Industrial and Biomedical Applications" Chemosensors 13, no. 4: 150.
https://doi.org/10.3390/chemosensors13040150
APA Style
Brinza, M., Schwäke, L., Zimoch, L., Strunskus, T., Pauporté, T., Viana, B., Ameri, T., Adelung, R., Faupel, F., Schröder, S., & Lupan, O.
(2025). Influence of P(V3D3-co-TFE) Copolymer Coverage on Hydrogen Detection Performance of a TiO2 Sensor at Different Relative Humidity for Industrial and Biomedical Applications. Chemosensors, 13(4), 150.
https://doi.org/10.3390/chemosensors13040150