Selective H2S sensing without external heat by a synergy effect in self-heated CuO-functionalized SnO2-ZnO core-shell nanowires

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초록

Future gas sensors require minimal power consumption to enable their integration into portable electronics such as smart mobile phones. We developed H2S gas sensors based on a self-heating effect using metal oxide nanowires (NWs). We fabricated bare SnO2 NWs, CuO functionalized SnO2 NWs, and a CuO functionalized SnO2-ZnO core-shell (C-S) NW sensor, and tested their sensor response towards H2S gas by applying different external voltages at room temperature. It was found that the CuO functionalized SnO2-ZnO C-S NW gas sensor had higher response to H2S gas relative to other tested sensors due to higher self-heating effect, formation of heterojuncfions, phase transformation, and spillover effects of CuO nanoparticles. Without external heat, the selective H2S detection obtained in this work demonstrates the possibility of embedding low power consumption gas sensors in portable devices for detection of H2S as a biomarker for early diagnosis of diseases.

키워드

Self-heatingSnO2-ZnOCuOCore-shell nanowireH2SGas sensorTHIN-FILMMETAL-OXIDESGAS SENSORSMECHANISMCOPPERNANOPARTICLESNANOGENERATORSENSITIVITYNANOFIBERSBEHAVIOR
제목
Selective H2S sensing without external heat by a synergy effect in self-heated CuO-functionalized SnO2-ZnO core-shell nanowires
저자
Kim, Jae-HunMirzaei, AliBang, Jae HoonKim, Hyoun WooKim, Sang Sub
DOI
10.1016/j.snb.2019.126981
발행일
2019-12-01
유형
Article
저널명
Sensors and Actuators, B: Chemical
300