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Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection

A low-cost and high-performance gas sensor was fabricated by the in-situ growing of ZnO nanoclusters (NCs) arrays on the etched fluorine-doped tin dioxide (FTO) glass via a facile dip-coating and hydrothermal method. Etched FTO glass was used as a new-type gas-sensing electrode due to its advantages...

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Autores principales: Zhao, Guodong, Xuan, Jingyue, Liu, Xiaolin, Jia, Fuchao, Sun, Yuping, Sun, Meiling, Yin, Guangchao, Liu, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6473985/
https://www.ncbi.nlm.nih.gov/pubmed/30875915
http://dx.doi.org/10.3390/nano9030435
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author Zhao, Guodong
Xuan, Jingyue
Liu, Xiaolin
Jia, Fuchao
Sun, Yuping
Sun, Meiling
Yin, Guangchao
Liu, Bo
author_facet Zhao, Guodong
Xuan, Jingyue
Liu, Xiaolin
Jia, Fuchao
Sun, Yuping
Sun, Meiling
Yin, Guangchao
Liu, Bo
author_sort Zhao, Guodong
collection PubMed
description A low-cost and high-performance gas sensor was fabricated by the in-situ growing of ZnO nanoclusters (NCs) arrays on the etched fluorine-doped tin dioxide (FTO) glass via a facile dip-coating and hydrothermal method. Etched FTO glass was used as a new-type gas-sensing electrode due to its advantages of being low cost and having excellent thermal and chemical stability. ZnO NCs are composed of multiple ZnO nanorods and can provide adequate lateral contacts to constitute the paths required for the gas-sensing tests simultaneously, which can provide many advantageous point junctions for the detection of low-concentration gases. The gas-sensing tests indicate that the ZnO NCs gas sensor has good selectivity and a high response for the low-concentration H(2)S gas. The sensing response has reached 3.3 for 500 ppb H(2)S at 330 °C. The excellent gas-sensing performances should be attributed to the large specific surface area of in-situ grown ZnO NCs, the perfect ohmic contact between ZnO NCs and FTO electrode and the variation of grain boundary barrier at the cross-linked junctions of multiple nanorods. In addition, the detailed effect of work temperature and gas concentration on gas-sensing, the stability of gas sensors and the corresponding response mechanism are also discussed in the present paper.
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spelling pubmed-64739852019-05-03 Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection Zhao, Guodong Xuan, Jingyue Liu, Xiaolin Jia, Fuchao Sun, Yuping Sun, Meiling Yin, Guangchao Liu, Bo Nanomaterials (Basel) Article A low-cost and high-performance gas sensor was fabricated by the in-situ growing of ZnO nanoclusters (NCs) arrays on the etched fluorine-doped tin dioxide (FTO) glass via a facile dip-coating and hydrothermal method. Etched FTO glass was used as a new-type gas-sensing electrode due to its advantages of being low cost and having excellent thermal and chemical stability. ZnO NCs are composed of multiple ZnO nanorods and can provide adequate lateral contacts to constitute the paths required for the gas-sensing tests simultaneously, which can provide many advantageous point junctions for the detection of low-concentration gases. The gas-sensing tests indicate that the ZnO NCs gas sensor has good selectivity and a high response for the low-concentration H(2)S gas. The sensing response has reached 3.3 for 500 ppb H(2)S at 330 °C. The excellent gas-sensing performances should be attributed to the large specific surface area of in-situ grown ZnO NCs, the perfect ohmic contact between ZnO NCs and FTO electrode and the variation of grain boundary barrier at the cross-linked junctions of multiple nanorods. In addition, the detailed effect of work temperature and gas concentration on gas-sensing, the stability of gas sensors and the corresponding response mechanism are also discussed in the present paper. MDPI 2019-03-15 /pmc/articles/PMC6473985/ /pubmed/30875915 http://dx.doi.org/10.3390/nano9030435 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhao, Guodong
Xuan, Jingyue
Liu, Xiaolin
Jia, Fuchao
Sun, Yuping
Sun, Meiling
Yin, Guangchao
Liu, Bo
Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title_full Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title_fullStr Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title_full_unstemmed Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title_short Low-Cost and High-Performance ZnO Nanoclusters Gas Sensor Based on New-Type FTO Electrode for the Low-Concentration H(2)S Gas Detection
title_sort low-cost and high-performance zno nanoclusters gas sensor based on new-type fto electrode for the low-concentration h(2)s gas detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6473985/
https://www.ncbi.nlm.nih.gov/pubmed/30875915
http://dx.doi.org/10.3390/nano9030435
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