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用于传感应用的TiCT MXene:最新进展、设计原理及未来展望

TiCT MXene for Sensing Applications: Recent Progress, Design Principles, and Future Perspectives.

作者信息

Pei Yangyang, Zhang Xiaoli, Hui Zengyu, Zhou Jinyuan, Huang Xiao, Sun Gengzhi, Huang Wei

机构信息

Frontiers Science Center for Flexible Electronics, Xi'an Institute of Flexible Electronics (IFE), and Xi'an Institute of Biomedical Materials and Engineering, Northwestern Polytechnical University (NPU), Xi'an 710072, P.R. China.

School of Physical Science and Technology, Lanzhou University, Lanzhou 730000, P.R. China.

出版信息

ACS Nano. 2021 Mar 23;15(3):3996-4017. doi: 10.1021/acsnano.1c00248. Epub 2021 Mar 11.

Abstract

Sensors are becoming increasingly significant in our daily life because of the rapid development in electronic and information technologies, including Internet of Things, wearable electronics, home automation, intelligent industry, . There is no doubt that their performances are primarily determined by the sensing materials. Among all potential candidates, layered nanomaterials with two-dimensional (2D) planar structure have numerous superior properties to their bulk counterparts which are suitable for building various high-performance sensors. As an emerging 2D material, MXenes possess several advantageous features of adjustable surface properties, tunable bandgap, and excellent mechanical strength, making them attractive in various applications. Herein, we particularly focus on the recent research progress in MXene-based sensors, discuss the merits of MXenes and their derivatives as sensing materials for collecting various signals, and try to elucidate the design principles and working mechanisms of the corresponding MXene-based sensors, including strain/stress sensors, gas sensors, electrochemical sensors, optical sensors, and humidity sensors. In the end, we analyze the main challenges and future outlook of MXene-based materials in sensor applications.

摘要

由于包括物联网、可穿戴电子设备、家庭自动化、智能工业等在内的电子和信息技术的快速发展,传感器在我们的日常生活中变得越来越重要。毫无疑问,它们的性能主要由传感材料决定。在所有潜在的候选材料中,具有二维(2D)平面结构的层状纳米材料相对于其块状对应物具有许多优异的性能,适合于构建各种高性能传感器。作为一种新兴的二维材料,MXenes具有可调节表面性质、可调带隙和优异机械强度等几个有利特征,使其在各种应用中具有吸引力。在此,我们特别关注基于MXene的传感器的最新研究进展,讨论MXenes及其衍生物作为用于收集各种信号的传感材料的优点,并试图阐明相应的基于MXene的传感器的设计原理和工作机制,包括应变/应力传感器、气体传感器、电化学传感器、光学传感器和湿度传感器。最后,我们分析了基于MXene的材料在传感器应用中的主要挑战和未来前景。

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