材料科学
选择性
异质结
制作
相对湿度
湿度
氨
纳米技术
人类健康
纳米颗粒
物联网
化学工程
纳米复合材料
光电子学
催化作用
有机化学
计算机科学
工程类
病理
嵌入式系统
物理
环境卫生
热力学
化学
医学
替代医学
作者
Delin Kuang,Xuezheng Guo,Zetao Zhu,Yanqiao Ding,Xia Sun,Zhilin Wu,L.W. Zhang,Yangyang Zhou,Yong He
标识
DOI:10.1016/j.ceramint.2021.03.284
摘要
Due to the expansion of human production activities, toxic ammonia (NH3) is excessively released into the atmosphere, being a huge threat to human health and the natural environment. Therefore, it is of great significance to design an easy-synthesized gas-sensing material with both good room temperature sensitivity and selectivity for trace-level NH3 detection. Herein, we fabricate a chemiresistive NH3 gas sensor with enhanced performance based on Ni(OH)2/Ti3C2Tx hybrid materials. The Ni(OH)2/Ti3C2Tx hybrid materials are synthesized by an in-situ electrostatic self-assembly method. Attributed to the formation of interfacial heterojunctions and the modulation of carrier density, the Ni(OH)2/Ti3C2Tx hybrid sensor exhibits high response, outstanding repeatability, good selectivity and stability in low concentrations of NH3. Moreover, the Ni(OH)2/Ti3C2Tx hybrid sensor has a higher response to 10 ppm NH3 at the relative humidity of 40% and 60%, which makes it promising for applications in real complex environments with high humidity. Benefitting from the low power consumption and easy fabrication process, the Ni(OH)2/Ti3C2Tx hybrid sensor possesses a broad application prospect in the internet of things (IoT) environmental monitoring.
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