二硫化钼
材料科学
量子点
纳米技术
半导体
异质结
光电子学
悬空债券
传感器
硅
电气工程
复合材料
工程类
作者
Jing‐yao Liu,Zhixiang Hu,Yuzhu Zhang,Hua‐Yao Li,Naibo Gao,Zhilai Tian,Licheng Zhou,Baohui Zhang,Jiang Tang,Jianbing Zhang,Fei Yi,Huan Liu
标识
DOI:10.1007/s40820-020-0394-6
摘要
Abstract The Internet of things for environment monitoring requires high performance with low power-consumption gas sensors which could be easily integrated into large-scale sensor network. While semiconductor gas sensors have many advantages such as excellent sensitivity and low cost, their application is limited by their high operating temperature. Two-dimensional (2D) layered materials, typically molybdenum disulfide (MoS 2 ) nanosheets, are emerging as promising gas-sensing materials candidates owing to their abundant edge sites and high in-plane carrier mobility. This work aims to overcome the sluggish and weak response as well as incomplete recovery of MoS 2 gas sensors at room temperature by sensitizing MoS 2 nanosheets with PbS quantum dots (QDs). The huge amount of surface dangling bonds of QDs enables them to be ideal receptors for gas molecules. The sensitized MoS 2 gas sensor exhibited fast and recoverable response when operated at room temperature, and the limit of NO 2 detection was estimated to be 94 ppb. The strategy of sensitizing 2D nanosheets with sensitive QD receptors may enhance receptor and transducer functions as well as the utility factor that determine the sensor performance, offering a powerful new degree of freedom to the surface and interface engineering of semiconductor gas sensors.
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