Humidity and CO2 Sensing Using a Graphene Film-Based Sensor Obtained by Using Liquid-Phase Exfoliation †
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References
- Andrić, S.; Tomašević-Ilić, T.; Bošković, M.V.; Sarajlić, M.; Vasiljević-Radović, D.; Smiljanić, M.M.; Spasenović, M. Ultrafast humidity sensor based on liquid phase exfoliated graphene. Nanotechnology 2020, 32, 025505. [Google Scholar] [CrossRef] [PubMed]
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Sarajlić, M.; Bošković, M.V.; Andrić, S.; Stevanović, J.N.; Spasenović, M.; Jokić, I. Humidity and CO2 Sensing Using a Graphene Film-Based Sensor Obtained by Using Liquid-Phase Exfoliation. Eng. Proc. 2022, 21, 15. https://doi.org/10.3390/engproc2022021015
Sarajlić M, Bošković MV, Andrić S, Stevanović JN, Spasenović M, Jokić I. Humidity and CO2 Sensing Using a Graphene Film-Based Sensor Obtained by Using Liquid-Phase Exfoliation. Engineering Proceedings. 2022; 21(1):15. https://doi.org/10.3390/engproc2022021015
Chicago/Turabian StyleSarajlić, Milija, Marko V. Bošković, Stevan Andrić, Jelena N. Stevanović, Marko Spasenović, and Ivana Jokić. 2022. "Humidity and CO2 Sensing Using a Graphene Film-Based Sensor Obtained by Using Liquid-Phase Exfoliation" Engineering Proceedings 21, no. 1: 15. https://doi.org/10.3390/engproc2022021015
APA StyleSarajlić, M., Bošković, M. V., Andrić, S., Stevanović, J. N., Spasenović, M., & Jokić, I. (2022). Humidity and CO2 Sensing Using a Graphene Film-Based Sensor Obtained by Using Liquid-Phase Exfoliation. Engineering Proceedings, 21(1), 15. https://doi.org/10.3390/engproc2022021015