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Realization of low-temperature and selective NO(2 )sensing of SnO2 nanowires via synergistic effects of Pt decoration and Bi2O3 branching

Authors
Bang, Jae HoonMirzaei, AliHan, SeungminLee, Ha YoungShin, Ka YoonKim, Sang SubKim, Hyoun Woo
Issue Date
Feb-2021
Publisher
ELSEVIER SCI LTD
Keywords
Bi2O3-SnO2; Branched nanowire; Pt nanoparticle; Gas sensor; NO2; Sensing mechanism
Citation
CERAMICS INTERNATIONAL, v.47, no.4, pp.5099 - 5111
Indexed
SCIE
SCOPUS
Journal Title
CERAMICS INTERNATIONAL
Volume
47
Number
4
Start Page
5099
End Page
5111
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/1606
DOI
10.1016/j.ceramint.2020.10.088
ISSN
0272-8842
Abstract
Metal oxide semiconductors with branched structures, such as branched nanowires (b-NWs), have promising properties for being used in gas sensors. In this work, we synthesized Pt-decorated Bi2O3-branched SnO2 nanowires (NWs). NO2 sensing studies revealed the superior capacity of a Pt-decorated Bi2O3-branched SnO2 NWs gas sensor relative to pristine and branched SnO2 gas sensors, and it worked at near room temperature (50 degrees C). The increased sensing capacity was related to the synergistic effects of Pt decoration and Bi2O3 branching, particularly the morphology of the gas sensor with branched structures, the promising effects of Pt as a noble metal with good catalytic activity, and the generation of homo- and heterojunctions in the Pt-decorated Bi2O3-branched SnO2 NWs gas sensor. The results obtained in this work are useful for design and development of NO2 gas sensors using a simple strategy, which can be easily extended to various metal oxides.
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COLLEGE OF ENGINEERING (SCHOOL OF MATERIALS SCIENCE AND ENGINEERING)
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