Light-activated NO₂ gas sensing of the networked CuO-decorated ZnS nanowire gas sensor

Light-activated NO2 gas sensing of the networked CuO-decorated ZnS nanowire gas sensor
  • Park, Sunghoon
  • Sun, Gun-Joo
  • Kheel, Hyejoon
  • Ko, Taegyung
  • Kim, Hyoun Woo
  • 외 1명
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초록

CuO-decorated ZnS nanowires were synthesized by the thermal evaporation of ZnS powders followed by a solvothermal process for CuO decoration. The NO₂ gas sensing properties of multiple-networked pristine and CuO-decorated ZnS nanowire sensors were then examined. The diameters of the CuO nanoparticles ranged from 20 to 60 nm. The multiple-networked pristine and CuO-decorated ZnS nanowire sensors showed the responses of 394 and 1055 %, respectively, to 5 ppm of NO₂ at room temperature under UV illumination at 2.2 mW/cm². The response and recovery times of the ZnS nanowire sensor to 5 ppm of NO₂ were also reduced by decoration with the CuO nanoparticles. The responses of the sensors to NO₂ at room temperature increased significantly with increasing UV illumination intensity. The underlying mechanisms for the enhanced response of the ZnS nanowire sensor to NO₂ gas by CuO decoration and UV irradiation are discussed.

키워드

PDSENSITIVITYPERFORMANCE
제목
Light-activated NO₂ gas sensing of the networked CuO-decorated ZnS nanowire gas sensor
제목 (타언어)
Light-activated NO2 gas sensing of the networked CuO-decorated ZnS nanowire gas sensor
저자
Park, SunghoonSun, Gun-JooKheel, HyejoonKo, TaegyungKim, Hyoun WooLee, Chongmu
DOI
10.1007/s00339-016-0042-7
발행일
2016-05
유형
Article
저널명
Applied Physics A: Materials Science and Processing
122
5
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1 ~ 8