Synergistic charge transfer in 3D-V<sub>2</sub>O<sub>5</sub>/1D-Co<sub>3</sub>O<sub>4</sub> composite for ultra-sensitive NO<sub>2</sub> gas detection

  • Yuan, Huimin; 
  • Hilal, Muhammad; 
  • Ali, Yasir; 
  • Ayub, Hafiz Muhammad Uzair; 
  • Cai, Zhicheng; 
  • ... Hwang, Yongha; 
  • 외 6명
Citations

WEB OF SCIENCE

27
Citations

SCOPUS

26

초록

The development of high-performance gas sensors for industrial safety and environmental protection demands innovative material design. Thus, advancing gas sensor technology necessitates innovative approaches to material synthesis, particularly in developing high-performance composites. This study presents a surfactant- and reducing agent-free method to synthesize 3D V2O5 with a high surface area (72 m(2) g(-1)) and 1D Co3O4 with superior charge transfer capabilities. The distinct surface energy (-40 mV for V2O5 vs. -5 mV for Co3O4) and Fermi level differences (-5.62 eV for Co3O4 vs. -4.36 eV for V2O5) enable the formation of a robust 3D-V2O5/1D-Co3O4 composite. This composite, investigated as a gas sensor for the first time, demonstrated significant synergistic effects. Among various ratios, the 0.5:0.5 V2O5:Co3O4 composite demonstrated exceptional NO2 sensing performance, with high responses (0.1 % to 250 ppb, 3.7 % to 50 ppm), sensitivity (0.53 Omega ppm(-1) over 5-200 ppm), and rapid response/recovery times (25 s/22 s) at 270 degrees C. The sensor's selectivity towards NO2 is attributed to the NO2's high electron affinity and it unpaired electron, which bond with surface oxygen atoms, enhancing chemisorption and electron transfer. Notably, each composite outperforms bare and layered (Co3O4/ V2O5) structures due to efficient charge transfer, increased surface area, and synergistic effects. Gas sensing mechanism and synergistic effects were confirmed via Mott-Schottky, XPS, Raman, zeta potential and Tauc-law analyses. The sensor achieved a low detection limit (250 ppb) and stable performance (>30 days), highlighting its practical potential for environmental and industrial safety applications.

키워드

Facial synthesis approach; Synergistic effects; Enhanced surface area; Environmental monitoring; Industrial safety; Co3O4:V2O5 heterostructures; SENSING PROPERTIES; CO3O4; PERFORMANCE
제목
Synergistic charge transfer in 3D-V<sub>2</sub>O<sub>5</sub>/1D-Co<sub>3</sub>O<sub>4</sub> composite for ultra-sensitive NO<sub>2</sub> gas detection
저자
Yuan, Huimin; Hilal, Muhammad; Ali, Yasir; Ayub, Hafiz Muhammad Uzair; Cai, Zhicheng; Kim, Hyojung; Zhang, Weibin; Khan, Ali Abbas; Abdo, Hany S.; Alnaser, Ibrahim A.; Hwang, Yongha; Han, Jeong In
DOI
10.1016/j.surfin.2025.105888
발행일
2025-02-01
유형
Article
저널명
Surfaces and Interfaces
권
58