Formation of nanograined Ag-Co3O4 core@shell structure to achieve enhanced xylene sensing characteristics

  • 신가윤
  • Mirzaei, Ali
  • Lee, Ha Young
  • Bang, Jae Hoon
  • 엄완식
  • ... Kim, Hyoun Woo
  • 외 4명
Citations

WEB OF SCIENCE

28
Citations

SCOPUS

28

초록

Xylene (C8H10) is a volatile organic compound as well as a pollutant which needs to be detected for various demands and applications. Herein, we report a unique core@shell (C-S) structure with core noble metal particles to incorporate catalytic elemnts. A nanograined Ag-Co3O4 C-S structure was prepared using a chemical synthesis method. Systematic xylene sensing studies were undertaken to prove the excellence of nanograined C-S structure. Various characterization techniques were used to confirm the synthesis of desired products with the expected features. The pristine sensor offered the highest performance to xylene at 350 °C, whereas nanograined Ag-Co3O4 C-S structure gas sensor worked at a lower temperature namely 250 °C. In addition, the maximum response of the pristine sensor to 50 ppm-xylene was about 1.26, whereas that of the nanograined Ag-Co3O4 C-S structure gas sensor was 2.47. Moreover, the latter sensor showed higher selectivity to xylene than the former sensor. The improved xylene sensing characteristics of the nanograined Ag-Co3O4 C-S structure gas sensor were caused by its high surface area, formation of Ag-Co3O4 heterojunctions, and catalytic effects of Ag nanoparticles. This study demonstrates the potential of this new system for sensing of xylene.

키워드

XyleneNanograinedAg-Co 3 O 4 core@shellGas sensorSensing mechanismGAS SENSORSILVER NANOPARTICLESPERFORMANCECO3O4VOCSPD
제목
Formation of nanograined Ag-Co3O4 core@shell structure to achieve enhanced xylene sensing characteristics
저자
신가윤Mirzaei, AliLee, Ha YoungBang, Jae Hoon엄완식김은비김형민Majhi, Sanjit ManoharKim, Sang SubKim, Hyoun Woo
DOI
10.1016/j.snb.2023.134049
발행일
2023-10
유형
Article
저널명
Sensors and Actuators, B: Chemical
392
페이지
1 ~ 12