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Metal Oxide Nanoparticles (XO, X = Cu, Zn, Ni) Doped GeSe Monolayer: Theoretical Exploration of a Novel H 2 S Gas Sensor for Health and Industrial Monitoring.

Authors :
Sun, Hao
Tao, Lu-Qi
Zhang, Fusheng
Li, Tao
He, Renzhi
Gao, Xin
Sang, Tianyi
Wang, Guanya
Peng, Zhirong
Zhu, Congcong
Zou, Simin
Gui, Yingang
Source :
IEEE Sensors Journal; Dec2021, Vol. 21 Issue 23, p26542-26548, 7p
Publication Year :
2021

Abstract

Real-time and accurate detection of H2S has been an urgent problem in industry and human health. In view of practical problems of the existing nano sensors such as poor selectivity, low sensitivity, strong or weak adsorption capacity, H2S sensors based on metal oxide nanoparticles (XO, X = Cu, Zn, Ni) doped GeSe monolayer are proposed. Compared with pure system, the improvement of the adsorption distance of doped systems proves the obvious interaction between the activated atoms and H2S. The excellent sensitivity ensures the detection effect of H2S at low concentration. The ideal adsorption energy makes doped systems have attractive adsorption and desorption properties. In addition, the excellent water resistance, high thermal stability and fascinating selectivity to H2S of doped systems verify the feasibility in practical application. This study lays a theoretical foundation for the development of new generation of wearable gas sensor for health and industrial monitoring. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1530437X
Volume :
21
Issue :
23
Database :
Complementary Index
Journal :
IEEE Sensors Journal
Publication Type :
Academic Journal
Accession number :
153924455
Full Text :
https://doi.org/10.1109/JSEN.2021.3119894