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Ultrasensitive detection of hydrogen sulfide gas based on perovskite vertical channel chemo-sensor
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Ultrasensitive detection of hydrogen sulfide gas based on perovskite vertical channel chemo-sensor

Kuan-Yi Lee, Ju-Chun Hsieh, Chi-An Chen, Wei-Lun Chen, Hsin-Fei Meng, Chia-Jung Lu, Sheng-Fu HorngHsiao-Wen Zan
Sensors and Actuators, B: Chemical, 卷.326, 128988
01/2021

摘要

Gas sensor Hydrogen sulfide Ppb-regime SCN--doped perovskite Sensing in air Electronic Optical and Magnetic Materials Instrumentation Condensed Matter Physics Surfaces Coatings and Films Metals and Alloys Electrical and Electronic Engineering Materials Chemistry
An ultrasensitive hydrogen sulfide gas sensor based on methylammonium lead perovskite is reported in this work. The pseudohalide molecular anion (SCN ) was introduced as a dopant in the perovskite-based active layer of the sensor. With the enlarged operational current provided by the vertical structure of the sensors, both the MAPbI 3- x (SCN) x -based and the MAPbI 3 -based gas sensors exhibit excellent ppb-regime (∼200 ppb) hydrogen sulfide gas sensing capability. Particularly, with the SCN doped, the MAPbI 3- x (SCN) x -based gas sensor demonstrates an enhanced sensitivity and a much improved ambient air endurance by extending the device lifetime more than 5 days. Finally, we also conducted experiments to study the effects of relative humidity and light irradiation on sensing performance. Preliminary mechanisms were also proposed.

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