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一种新型乙醇气体传感器——硫化锌/环己胺混合纳米线。

A novel ethanol gas sensor-ZnS/ cyclohexylamine hybrid nanowires.

作者信息

Xu Lin, Song Hongwei, Zhang Tong, Fan Huitao, Fan Libo, Wang Yu, Dong Biao, Bai Xue

机构信息

State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, PR China.

出版信息

J Nanosci Nanotechnol. 2011 Mar;11(3):2121-5. doi: 10.1166/jnn.2011.3515.

Abstract

We fabricated a novel ethanol gas sensor based on organic-inorganic ZnS/cyclohexylamine (CHA) nanowires via a solvothermal route. The sensor exhibited significantly better performance with response time of approximately 0.6 s and recovery time of approximately 10 s even under a low ethanol concentration and the high surface area, small nanofiber diameter, and hybrid nature made the ZnS/CHA nanowire gas sensor have high sensitivity to ethanol gas at a lower operating current of 160 mA. Moreover, the gas sensing mechanism was proposed on the basis of the two simultaneous steps to explain the adsorbing process due to the hybrid nature. This work indicates that the ZnS/CHA hybrid can be a novel candidate for the ethanol gas sensor with high performance.

摘要

我们通过溶剂热法制备了一种基于有机-无机ZnS/环己胺(CHA)纳米线的新型乙醇气体传感器。该传感器表现出显著更好的性能,即使在低乙醇浓度下,响应时间约为0.6秒,恢复时间约为10秒,并且高表面积、小纳米纤维直径以及混合性质使得ZnS/CHA纳米线气体传感器在160 mA的较低工作电流下对乙醇气体具有高灵敏度。此外,基于两个同时发生的步骤提出了气敏机理,以解释由于混合性质导致的吸附过程。这项工作表明,ZnS/CHA混合物可以成为高性能乙醇气体传感器的新型候选材料。

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