Selective, sensitive, and stable NO2 gas sensor based on porous ZnO nanosheets

  • Sik, Choi M.
  • Young, Kim M.
  • Mirzaei, A.
  • Kim, H.-S.
  • Kim, S.-I.
  • 외 4명
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초록

In this study, we synthesized porous (porosity: ~16%, average pore size: ~60 nm) ZnO nanosheets (thickness: ~80 nm) using a conventional solvothermal method to investigate NO2 gas sensing properties. Porous ZnO nanosheets triggered the detection of NO2 gas with high sensitivity. Responses of 2.93 – 0.5 ppm and 74.68 – 10 ppm NO2 gas at 200 °C were observed in the porous ZnO nanosheet-based gas sensor. In addition, improved sensing properties with high selectivity to NO2 gas, reasonable stability, and high response even in the presence of water vapor molecules were obtained. We found that the enhanced NO2 gas response of the porous ZnO nanosheet-based gas sensor was due to the synergetic effects of the high surface area, ZnO/ZnO homojunctions, and structural defects. We developed a highly sensitive NO2 gas sensor with improved reliability using morphologically engineered ZnO, which was prepared via a simple and scalable chemical-synthesis route. © 2021 Elsevier B.V.

키워드

Gas sensorNO2 gasPorous ZnO nanosheetSensing mechanismChemical sensorsGas detectorsNanosheetsNitrogen oxidesPore sizeZinc oxideGas sensing propertiesGas-sensorsNO $-2$NO2 gasPorous ZnO nanosheetSensing mechanismSolvothermal methodSynthesisedZnOZnO nanosheetsII-VI semiconductors
제목
Selective, sensitive, and stable NO2 gas sensor based on porous ZnO nanosheets
저자
Sik, Choi M.Young, Kim M.Mirzaei, A.Kim, H.-S.Kim, S.-I.Baek, S.-H.Won, Chun D.Jin, C.Hyoung, Lee K.
DOI
10.1016/j.apsusc.2021.150910
발행일
2021-12-01
유형
Article
저널명
Applied Surface Science
568