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H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors

2D heterostructures are promising gas sensor materials due to their surface/interface effects and hybrid properties. In this research, Cu(2)O/Fe(2)O(3) heterostructure ordered arrays were synthesized using an in situ electrodeposition method for H(2)S detection at low temperatures. These arrays poss...

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Detalles Bibliográficos
Autores principales: Zhang, Pinhua, Zhu, Hongyang, Xue, Kaifeng, Chen, Li, Shi, Changmin, Wang, Dongchao, Li, Jianfu, Wang, Xiaoli, Cui, Guangliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049979/
https://www.ncbi.nlm.nih.gov/pubmed/35497864
http://dx.doi.org/10.1039/c9ra10054g
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author Zhang, Pinhua
Zhu, Hongyang
Xue, Kaifeng
Chen, Li
Shi, Changmin
Wang, Dongchao
Li, Jianfu
Wang, Xiaoli
Cui, Guangliang
author_facet Zhang, Pinhua
Zhu, Hongyang
Xue, Kaifeng
Chen, Li
Shi, Changmin
Wang, Dongchao
Li, Jianfu
Wang, Xiaoli
Cui, Guangliang
author_sort Zhang, Pinhua
collection PubMed
description 2D heterostructures are promising gas sensor materials due to their surface/interface effects and hybrid properties. In this research, Cu(2)O/Fe(2)O(3) heterostructure ordered arrays were synthesized using an in situ electrodeposition method for H(2)S detection at low temperatures. These arrays possess a periodic long range ordered structure with horizontal multi-heterointerfaces, leading to superior gas sensitivity for synergistic effects at the heterointerfaces. The sensor based on the Cu(2)O/Fe(2)O(3) heterostructure ordered arrays exhibits a dramatic improvement in H(2)S detection at low temperatures (even as low as −15 °C). The response is particularly significant at room and human body temperatures since the conductivity of the arrays can change by up to three orders of magnitude in a 10 ppm H(2)S atmosphere. These good performances are also attributed to the formation of metallic Cu(2)S conducting channels. Our results imply that the Cu(2)O/Fe(2)O(3) heterostructure ordered arrays are promising candidates for high-performance H(2)S gas sensors that function at low temperatures as well as breath analysis systems for disease diagnosis.
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spelling pubmed-90499792022-04-29 H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors Zhang, Pinhua Zhu, Hongyang Xue, Kaifeng Chen, Li Shi, Changmin Wang, Dongchao Li, Jianfu Wang, Xiaoli Cui, Guangliang RSC Adv Chemistry 2D heterostructures are promising gas sensor materials due to their surface/interface effects and hybrid properties. In this research, Cu(2)O/Fe(2)O(3) heterostructure ordered arrays were synthesized using an in situ electrodeposition method for H(2)S detection at low temperatures. These arrays possess a periodic long range ordered structure with horizontal multi-heterointerfaces, leading to superior gas sensitivity for synergistic effects at the heterointerfaces. The sensor based on the Cu(2)O/Fe(2)O(3) heterostructure ordered arrays exhibits a dramatic improvement in H(2)S detection at low temperatures (even as low as −15 °C). The response is particularly significant at room and human body temperatures since the conductivity of the arrays can change by up to three orders of magnitude in a 10 ppm H(2)S atmosphere. These good performances are also attributed to the formation of metallic Cu(2)S conducting channels. Our results imply that the Cu(2)O/Fe(2)O(3) heterostructure ordered arrays are promising candidates for high-performance H(2)S gas sensors that function at low temperatures as well as breath analysis systems for disease diagnosis. The Royal Society of Chemistry 2020-02-26 /pmc/articles/PMC9049979/ /pubmed/35497864 http://dx.doi.org/10.1039/c9ra10054g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Pinhua
Zhu, Hongyang
Xue, Kaifeng
Chen, Li
Shi, Changmin
Wang, Dongchao
Li, Jianfu
Wang, Xiaoli
Cui, Guangliang
H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title_full H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title_fullStr H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title_full_unstemmed H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title_short H(2)S detection at low temperatures by Cu(2)O/Fe(2)O(3) heterostructure ordered array sensors
title_sort h(2)s detection at low temperatures by cu(2)o/fe(2)o(3) heterostructure ordered array sensors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049979/
https://www.ncbi.nlm.nih.gov/pubmed/35497864
http://dx.doi.org/10.1039/c9ra10054g
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