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Cited 12 time in webofscience Cited 15 time in scopus
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Gasochromic WO3 Nanostructures for the Detection of Hydrogen Gas: An Overviewopen access

Authors
Mirzaei, AliKim, Jae-HunKim, Hyoun WooKim, Sang Sub
Issue Date
May-2019
Publisher
MDPI
Keywords
gasochromic; nanostructured WO3; gas sensor; hydrogen gas; sensing mechanism
Citation
APPLIED SCIENCES-BASEL, v.9, no.9, pp.1 - 21
Indexed
SCIE
SCOPUS
Journal Title
APPLIED SCIENCES-BASEL
Volume
9
Number
9
Start Page
1
End Page
21
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/14160
DOI
10.3390/app9091775
Abstract
Hydrogen is one of the most important gases that can potentially replace fossil fuels in the future. Nevertheless, it is highly explosive, and its leakage should be detected by reliable gas sensors for safe operation during storage and usage. Most hydrogen gas sensors operate at high temperatures, which introduces the risk of hydrogen explosion. Gasochromic WO3 sensors work based on changes in their optical properties and color variation when exposed to hydrogen gas. They can work at low or room temperatures and, therefore, are good candidates for the detection of hydrogen leakage with low risk of explosion. Once their morphology and chemical composition are carefully designed, they can be used for the realization of sensitive, selective, low-cost, and flexible hydrogen sensors. In this review, for the first time, we discuss different aspects of gasochromic WO3 gas sensor-based hydrogen detection. Pristine, heterojunction, and noble metal-decorated WO3 nanostructures are discussed for the detection of hydrogen gas in terms of changes in their optical properties or visible color. This review is expected to provide a good background for research work in the field of gas sensors.
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