选择性
材料科学
正丁醇
检出限
丁醇
共沉淀
纳米颗粒
催化作用
化学工程
纳米技术
分析化学(期刊)
无机化学
有机化学
色谱法
乙醇
化学
工程类
作者
Xiuxiu Cui,Tian Xu,Xuechun Xiao,Ting Chen,Yude Wang
标识
DOI:10.1002/admt.202300572
摘要
Abstract At present, there are still few gas sensors for detecting n ‐butanol at room temperature. It is worth noting that detecting target gas at room temperature is beneficial to reduce energy consumption and prolong the lifetime of sensors. In this work, different molar ratios Au nanoparticles modified SnO 2 derived from Sn‐MOF hollow cubes (Au‐SnO 2 ) are synthesized by the coprecipitation method. The Au‐SnO 2 has higher specific surface area than pure SnO 2 , which is conducive to improving gas sensing. The 0.7% Au‐SnO 2 exhibit excellent sensing performances of 240% toward 100 ppm n ‐butanol and the actual detection interval is 200 ppb–500 ppm under the room temperature. Meanwhile, DFT calculations reveal that Au‐SnO 2 gas sensor has wonderful selectivity to n ‐butanol at room temperature. The enhancement of n ‐butanol sensing performance is also related to the “catalytic sensitization” effect and the “electron sensitization” effect triggered driven by Au NPs. It is hoped this Au‐SnO 2 sensing material with such great gas response, selectivity and low detection limit will help detect n ‐butanol at room temperature to lower energy consumption.
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