Resistive-type sensors based on few-layer MXene and SnO2 hollow spheres heterojunctions: Facile synthesis, ethanol sensing performances

被引:0
|
作者
Lihua Chu [1 ]
Hao Yan [1 ]
Wanfeng Xie [2 ,3 ]
Yuxin Shi [1 ]
Muhammad Hilal [3 ]
Changxu Sun [1 ]
Ze Li [1 ]
Meicheng Li [1 ]
机构
[1] School of New Energy, North China Electric Power University
[2] College of Electronics and Information, University-Industry Joint Center for Ocean Observation and Broadband Communication, Qingdao University
[3] Department of Physics, Dongguk University
基金
中国博士后科学基金; 新加坡国家研究基金会; 北京市自然科学基金; 中央高校基本科研业务费专项资金资助; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TB332 [非金属复合材料]; TP212 [发送器(变换器)、传感器];
学科分类号
080202 ; 0805 ; 080502 ;
摘要
High-performance and low-cost gas sensors are highly desirable and involved in industrial production and environmental detection. The combination of highly conductive MXene and metal oxide materials is a promising strategy to further improve the sensing performances. In this study, the hollow SnO2nanospheres and few-layer MXene are assembled rationally via facile electrostatic synthesis processes,then the SnO2/Ti3C2Txnanocomposites were obtained. Compared with that based on either pure SnO2nanoparticles or hollow nanospheres of SnO2, the SnO2/Ti3C2Txcomposite-based sensor exhibits much better sensing performances such as higher response(36.979), faster response time(5 s), and much improved selectivity as well as stability(15 days) to 100 ppm C2H5OH at low working temperature(200 °C).The improved sensing performances are mainly attributed to the large specific surface area and significantly increased oxygen vacancy concentration, which provides a large number of active sites for gas adsorption and surface catalytic reaction. In addition, the heterostructure interfaces between SnO2hollow spheres and MXene layers are beneficial to gas sensing behaviors due to the synergistic effect.
引用
收藏
页码:528 / 533
页数:6
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