Ag-doped capsule-like tungsten oxide with controllable band structure and oxygen vacancy for highly efficient triethylamine sensing

H Hui Liang (Frontiers Science Center for Transformative Molecules, Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Chemistry and Chemical Engineering, Zhangjiang Institute for Advanced Study) Y Yan Liu J Jiuyu Li (College of Chemistry and Chemical Engineering, Taiyuan University of Technology 1 , No. 79 Yingze Weststreet, Taiyuan 030024,) H Hu Ma (College of Chemistry and Chemical Engineering, Taiyuan University of Technology 1 , No. 79 Yingze Weststreet, Taiyuan 030024,) R Ruihua Zhao J Jianping Du

Abstract

The detection and portable monitoring of organic amine is necessary for hazardous substance warning, life, and health. Herein, capsule-like tungsten oxide nanoparticles (NPs) were prepared to detect triethylamine, and the gas-sensing property is further enhanced by adjusting oxygen vacancy and band structure by doping tungsten oxide with Ag NPs. As-prepared nanomaterial consists of well-dispersed nanoparticles with capsule-like shapes. More chemically adsorbed oxygen and oxygen vacancy are formed in Ag-doped tungsten oxide, and bandgap decreases compared with pristine tungsten oxide. The gas-sensing tests show that the optimal Ag-doped tungsten oxide (Ag/WO3) NPs-based sensor exhibits more than six times the response higher than that of pristine tungsten oxide toward 50 ppm triethylamine (TEA) at an optimal temperature of 220 °C, with a detection limit as low as 248 ppb. Notably, fast response and recovery time and anti-interference properties are remarkable, and the two-week stability is also satisfactory, which are superior to reported related materials. For real-time TEA detection, as-prepared Ag/WO3 is proved to be efficient sensing material for portable monitoring applications.

Article Details

Volume / Issue Vol. 126, Issue 13
Published March 01, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (6)

H

Hui Liang

Frontiers Science Center for Transformative Molecules, Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Chemistry and Chemical Engineering, Zhangjiang Institute for Advanced Study

Y

Yan Liu

J

Jiuyu Li

College of Chemistry and Chemical Engineering, Taiyuan University of Technology 1 , No. 79 Yingze Weststreet, Taiyuan 030024,

H

Hu Ma

College of Chemistry and Chemical Engineering, Taiyuan University of Technology 1 , No. 79 Yingze Weststreet, Taiyuan 030024,

R

Ruihua Zhao

J

Jianping Du