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Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications

[Image: see text] We investigated the noise and photoresponse characteristics of various optical transparencies of nanotube networks to identify an optimal randomly oriented network of carbon nanotube (CNT)-based devices for UV-assisted gas sensing applications. Our investigation reveals that all of...

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Autores principales: Drozdowska, Katarzyna, Rehman, Adil, Smulko, Janusz, Krajewska, Aleksandra, Stonio, Bartłomiej, Sai, Pavlo, Przewłoka, Aleksandra, Filipiak, Maciej, Pavłov, Krystian, Cywiński, Grzegorz, Lyubchenko, Dmitry V., Rumyantsev, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521142/
https://www.ncbi.nlm.nih.gov/pubmed/37682632
http://dx.doi.org/10.1021/acssensors.3c01185
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author Drozdowska, Katarzyna
Rehman, Adil
Smulko, Janusz
Krajewska, Aleksandra
Stonio, Bartłomiej
Sai, Pavlo
Przewłoka, Aleksandra
Filipiak, Maciej
Pavłov, Krystian
Cywiński, Grzegorz
Lyubchenko, Dmitry V.
Rumyantsev, Sergey
author_facet Drozdowska, Katarzyna
Rehman, Adil
Smulko, Janusz
Krajewska, Aleksandra
Stonio, Bartłomiej
Sai, Pavlo
Przewłoka, Aleksandra
Filipiak, Maciej
Pavłov, Krystian
Cywiński, Grzegorz
Lyubchenko, Dmitry V.
Rumyantsev, Sergey
author_sort Drozdowska, Katarzyna
collection PubMed
description [Image: see text] We investigated the noise and photoresponse characteristics of various optical transparencies of nanotube networks to identify an optimal randomly oriented network of carbon nanotube (CNT)-based devices for UV-assisted gas sensing applications. Our investigation reveals that all of the studied devices demonstrate negative photoconductivity upon exposure to UV light. Our studies confirm the effect of UV irradiation on the electrical properties of CNT networks and the increased photoresponse with decreasing UV light wavelength. We also extend our analysis to explore the low-frequency noise properties of different nanotube network transparencies. Our findings indicate that devices with higher nanotube network transparencies exhibit lower noise levels. We conduct additional measurements of noise and resistance in an ethanol and acetone gas environment, demonstrating the high sensitivity of higher-transparent (lower-density) nanotube networks. Overall, our results indicate that lower-density nanotube networks hold significant promise as a viable choice for UV-assisted gas sensing applications.
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spelling pubmed-105211422023-09-27 Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications Drozdowska, Katarzyna Rehman, Adil Smulko, Janusz Krajewska, Aleksandra Stonio, Bartłomiej Sai, Pavlo Przewłoka, Aleksandra Filipiak, Maciej Pavłov, Krystian Cywiński, Grzegorz Lyubchenko, Dmitry V. Rumyantsev, Sergey ACS Sens [Image: see text] We investigated the noise and photoresponse characteristics of various optical transparencies of nanotube networks to identify an optimal randomly oriented network of carbon nanotube (CNT)-based devices for UV-assisted gas sensing applications. Our investigation reveals that all of the studied devices demonstrate negative photoconductivity upon exposure to UV light. Our studies confirm the effect of UV irradiation on the electrical properties of CNT networks and the increased photoresponse with decreasing UV light wavelength. We also extend our analysis to explore the low-frequency noise properties of different nanotube network transparencies. Our findings indicate that devices with higher nanotube network transparencies exhibit lower noise levels. We conduct additional measurements of noise and resistance in an ethanol and acetone gas environment, demonstrating the high sensitivity of higher-transparent (lower-density) nanotube networks. Overall, our results indicate that lower-density nanotube networks hold significant promise as a viable choice for UV-assisted gas sensing applications. American Chemical Society 2023-09-08 /pmc/articles/PMC10521142/ /pubmed/37682632 http://dx.doi.org/10.1021/acssensors.3c01185 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Drozdowska, Katarzyna
Rehman, Adil
Smulko, Janusz
Krajewska, Aleksandra
Stonio, Bartłomiej
Sai, Pavlo
Przewłoka, Aleksandra
Filipiak, Maciej
Pavłov, Krystian
Cywiński, Grzegorz
Lyubchenko, Dmitry V.
Rumyantsev, Sergey
Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title_full Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title_fullStr Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title_full_unstemmed Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title_short Optimum Choice of Randomly Oriented Carbon Nanotube Networks for UV-Assisted Gas Sensing Applications
title_sort optimum choice of randomly oriented carbon nanotube networks for uv-assisted gas sensing applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521142/
https://www.ncbi.nlm.nih.gov/pubmed/37682632
http://dx.doi.org/10.1021/acssensors.3c01185
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