Rational construction of α-MoO3@WO3 nanosheets and its triethylamine sensing performances
- Authors
- Yan, Shu; Yang, Fan; Dong, Xianhui; Zhang, Chao; Xu, Xinda; Chi, Zongtao; Yang, Woochul; Xie, Wanfeng
- Issue Date
- May-2024
- Publisher
- Elsevier Ltd
- Keywords
- MoO3; Nanosheet; Semiconducting metal oxide; Triethylamine sensor; WO3
- Citation
- Ceramics International, v.50, no.9, pp 14238 - 14246
- Pages
- 9
- Indexed
- SCIE
SCOPUS
- Journal Title
- Ceramics International
- Volume
- 50
- Number
- 9
- Start Page
- 14238
- End Page
- 14246
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/26069
- DOI
- 10.1016/j.ceramint.2024.01.331
- ISSN
- 0272-8842
1873-3956
- Abstract
- Real-time monitoring of triethylamine (TEA) is critical to environmental safety and daily life. However, detailed challenges remain for TEA gas sensors, such as low-cost and facile synthetic methods, and low working temperatures. In this study, a combination of hydrothermal and wet chemical approaches is utilized for the rational construction of α-MoO3@WO3 with a sheet-like nanostructure. Additionally, the sensing performances towards triethylamine are investigated. According to the results, it was found that the α-MoO3@WO3 sensor has a higher response value (80.4) and faster response and recovery times (9/26 s) than those of pristine MoO3 at low optimum temperature (200 °C). Again, the α-MoO3@WO3 based sensor also demonstrated high selectivity to TEA as well as good stability. The enhancement of the MoO3@WO3 sensor's gas-sensitive mechanism may be attributed to the formation of n-n heterojunction between MoO3 and WO3 and the synergistic effect of both. © 2024 Elsevier Ltd and Techna Group S.r.l.
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