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中国物理学会期刊

新型二维材料Ti3C2Tx MXene制备及其气敏性能研究

CSTR: 32037.14.aps.71.20211048

Preparation and gas sensing properties of a novel two-dimensional material Ti3C2Tx MXene

CSTR: 32037.14.aps.71.20211048
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  • 随着石墨烯材料的发现, 二维材料被人们广泛认识并逐渐应用, 相比于传统二维材料, 二维过渡金属碳化物(MXene)的力学、磁学和电学性能更加优异. 本文分别利用HF溶液和LiF/HCl溶液刻蚀Ti3AlC2获得了Ti3C2Tx样品, 通过电子扫描显微镜(SEM)、X射线光电子能谱(XPS)和气敏特性分析, 研究了刻蚀剂对Ti3C2Tx材料结构和气敏性能的影响. 材料结构分析表明: HF和LiF/HCl刻蚀剂均对Ti3C2Tx材料具有良好的刻蚀效果; 气敏性能结果表明: LiF/HCl刻蚀剂制备的Ti3C2Tx的气敏性能优于HF刻蚀剂, 并实现了室温下宽范围、较高灵敏和较高稳定地检测NH3. 分析认为: LiF/HCl溶液刻蚀制备的Ti3C2Tx材料表面具有较高比例的—O和—OH官能团, 是其高传感性能的主要原因. 本实验研究可为Ti3C2Tx基传感器件的气敏研究和实际应用奠定一定的理论基础.

     

    Since the discovery of graphene materials, two-dimensional materials have been widely recognized and gradually applied. Two-dimensional transition metal carbides (MXenes) have better mechanical, magnetic and electrical properties than traditional two-dimensional materials. In this work, Ti3C2Tx samples are prepared by etching Ti3AlC2 with different etching agents for the solutions of HF and LiF/HCl. The effects of etching agents on the structure and gas sensing properties of Ti3C2Tx materials are studied by scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and gas sensing properties analysis. The material structure analysis shows that both HF and LiF/HCl etching agents have good etching effect on Ti3C2Tx material. The results of gas sensing properties show that the gas sensing properties of Ti3C2Tx prepared by LiF/HCl etching agent is better than by HF etching agent, and the wide range, high sensitivity and high stability of NH3 detection can be achieved at room temperature. The analysis shows that the high sensing performance of Ti3C2Tx prepared by LiF/HCl solution etching is mainly due to the high proportion of —O and —OH functional groups on the surface of Ti3C2Tx. The experimental studies can lay a theoretical foundation for studying the gas sensing and practical application of Ti3C2Tx based sensor.

     

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