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Room temperature NH3 gas sensor based on In(OH)3/Ti3C2Tx nanocomposites

Zhihua Zhao, Longqi Yao,Shuaiwen Zhang, Qingsheng Shi, Abu Bakker Md Rahmatullah,Lan Wu

Microchimica Acta(2024)

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Abstract
Industrialization and agricultural demand have both improved human life and led to environmental contamination. Especially the discharge of a lot of poisonous and harmful gases, including ammonia, ammonia pollution has become a pressing problem. High concentrations of ammonia can pose significant threats to both the environment and human health. Therefore, accurate monitoring and detection of ammonia gas are crucial. To address this challenge, we have developed an ammonia gas sensor using In(OH)3/Ti3C2Tx nanocomposites through an in-situ electrostatic self-assembly process. This sensor was thoroughly characterized using advanced techniques like XRD, XPS, BET, and TEM. In our tests, the I/M-2 sensor exhibited remarkable performance, achieving a 16.8
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Key words
Ti3C2Tx MXene,In(OH)3,Nanocomposites,Gas sensor,NH3 sensing
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