Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature

NiO intercalated reduced graphene oxide nanocomposites (rGO/NiO NC's) with different amounts of NiO nanoparticles (NP's) were fabricated via solvothermal technique. NH3 gas sensors was measured at room temperature. The rGO/NiO NC's appeared uniformly distributed NiO NP's anchored...

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Main Authors: Sasithorn Srirattanapibul, Puttipol Nakarungsee, Chaisak Issro, I. Ming Tang, Sirikanjana Thongmee
Other Authors: Kasetsart University
Format: Article
Published: 2022
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/73949
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spelling th-mahidol.739492022-08-04T11:51:16Z Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature Sasithorn Srirattanapibul Puttipol Nakarungsee Chaisak Issro I. Ming Tang Sirikanjana Thongmee Kasetsart University Mahidol University Burapha University Engineering Materials Science Physics and Astronomy NiO intercalated reduced graphene oxide nanocomposites (rGO/NiO NC's) with different amounts of NiO nanoparticles (NP's) were fabricated via solvothermal technique. NH3 gas sensors was measured at room temperature. The rGO/NiO NC's appeared uniformly distributed NiO NP's anchored to both sides of the rGO sheets. The NH3 gas sensing performance based on these rGO/NiO NC's exhibited excellent both fast response and recovery times when exposed to 20 – 100 ppm of NH3. In addition, increasing the amount of NiO NP's has an effect to the gas response ability, the response time and recovery time due to the enhancement of the active adsorption sites. Moreover, the 20% rGO/NiO NC's presented a significant gas response of 4.14% to 100 ppm of NH3, taking 290 and 166 s for response time and recovery time, respectively. Besides, the rGO/NiO NC's have an excellent long-term stability. Therefore, the rGO/NiO NC's in this study can be efficiently used for NH3 detection at room temperature. From these results, they showed that the combination of NiO NP's with the rGO would be a promising strategy for enhancing the NH3 sensing performance of metal oxide semiconductor (MOS) based devices at room temperature. 2022-08-04T04:01:37Z 2022-08-04T04:01:37Z 2022-01-01 Article Materials Science in Semiconductor Processing. Vol.137, (2022) 10.1016/j.mssp.2021.106221 13698001 2-s2.0-85115894196 https://repository.li.mahidol.ac.th/handle/123456789/73949 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85115894196&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Engineering
Materials Science
Physics and Astronomy
spellingShingle Engineering
Materials Science
Physics and Astronomy
Sasithorn Srirattanapibul
Puttipol Nakarungsee
Chaisak Issro
I. Ming Tang
Sirikanjana Thongmee
Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
description NiO intercalated reduced graphene oxide nanocomposites (rGO/NiO NC's) with different amounts of NiO nanoparticles (NP's) were fabricated via solvothermal technique. NH3 gas sensors was measured at room temperature. The rGO/NiO NC's appeared uniformly distributed NiO NP's anchored to both sides of the rGO sheets. The NH3 gas sensing performance based on these rGO/NiO NC's exhibited excellent both fast response and recovery times when exposed to 20 – 100 ppm of NH3. In addition, increasing the amount of NiO NP's has an effect to the gas response ability, the response time and recovery time due to the enhancement of the active adsorption sites. Moreover, the 20% rGO/NiO NC's presented a significant gas response of 4.14% to 100 ppm of NH3, taking 290 and 166 s for response time and recovery time, respectively. Besides, the rGO/NiO NC's have an excellent long-term stability. Therefore, the rGO/NiO NC's in this study can be efficiently used for NH3 detection at room temperature. From these results, they showed that the combination of NiO NP's with the rGO would be a promising strategy for enhancing the NH3 sensing performance of metal oxide semiconductor (MOS) based devices at room temperature.
author2 Kasetsart University
author_facet Kasetsart University
Sasithorn Srirattanapibul
Puttipol Nakarungsee
Chaisak Issro
I. Ming Tang
Sirikanjana Thongmee
format Article
author Sasithorn Srirattanapibul
Puttipol Nakarungsee
Chaisak Issro
I. Ming Tang
Sirikanjana Thongmee
author_sort Sasithorn Srirattanapibul
title Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
title_short Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
title_full Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
title_fullStr Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
title_full_unstemmed Performance of NiO intercalated rGO nanocomposites for NH<inf>3</inf> sensing at room temperature
title_sort performance of nio intercalated rgo nanocomposites for nh<inf>3</inf> sensing at room temperature
publishDate 2022
url https://repository.li.mahidol.ac.th/handle/123456789/73949
_version_ 1763498231635902464