三乙胺
材料科学
多孔性
化学工程
纳米技术
化学
有机化学
复合材料
工程类
作者
Feng Wang,Haoran Zhong,Zhenlu Chen,Ding Wang,Zhuangchai Lai,Yonghui Deng,Ding Wang
标识
DOI:10.1016/j.cclet.2022.03.115
摘要
The freshness of seafood can be judged by detecting the concentration of triethylamine (TEA). In this work, 2D CuO porous nanosheets (CuO PNs) were prepared by a graphene oxide template method and their particle sizes were regulated by changing the calcination temperature. Their structure, morphology and gas sensing performances were investigated by various characterization methods. The response ( R g / R a ) of the gas sensor based on CuO PNs calcined at 700 o C was as high as 440 toward 100 ppm TEA at the operating temperature of 40 °C. The detection limit was as low as 0.25 ppm. In addition, the gas sensor has good selectivity and stability. The excellent TEA sensitivity is mainly resulted from the appropriate particle size and loose porous framework. This work not only paves the way to explore the novel low temperature TEA gas sensors, but also provides deep insight on improving the structure and properties of gas sensitive materials by controlling the calcination temperature. The sensor based on porous 2D CuO nanosheet shows high selectivity, good selectivity and low detection limit for triethylamine gas detection at low temperature
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