Ti3C2Tx/SnO2 P–N heterostructure construction boosts room-temperature detecting formaldehyde

被引:0
|
作者
Yue Zhang [1 ]
Ming-Yue Wang [2 ]
Xiao-Guang San [1 ]
Yan-Bai Shen [3 ]
Guo-Sheng Wang [1 ]
Lei Zhang [1 ]
Dan Meng [1 ]
机构
[1] College of Chemical Engineering, Shenyang University of Chemical Technology
[2] Institute for Superconducting and Electronic Materials (ISEM),Australian Institute for Innovative Materials (AIIM), University of Wollongong
[3] College of Resources and Civil Engineering, Northeastern University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TB33 [复合材料]; TP212 [发送器(变换器)、传感器];
学科分类号
080202 ; 0805 ; 080502 ;
摘要
Formaldehyde is a common atmospheric pollutant produced in industrial production and daily life.However,the traditional semiconductor formaldehyde gas sensor cannot work at room temperature,which limits its practical application.Therefore,developing high-performance gas sensors for rapidly and accurately detecting formaldehyde at room temperature is an important topic.In this study,Ti3C2Tx/SnO2heterostructures were constructed,which could selectively detect formaldehyde at room temperature with a response value of 29.16%(10×10-6).In addition,the sensor shows a remarkable theoretical detection limit of 5.09×10-9and good longterm stability.Density functional theory(DFT) simulations reveal that SnO2nano spheres provide the majority of adsorption sites that strongly interact with formaldehyde.Meanwhile,Ti3C2Txacting as a conductive layer facilitates the transfer of charge carriers so that they show a sensing response to formaldehyde at room temperature.Moreover,the formation of p-n heterostructures between SnO2and Ti3C2Txboosts the Schottky barrier at the interface,which is the critical factor in enhancing the sensing properties by turning the Schottky barrier upon introducing formaldehyde gas.This perspective is expected to provide instructive guidance for utilizing MXene/metal oxide nanocomposites to improve the gas sensing performance at room temperature.
引用
收藏
页码:267 / 279
页数:13
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