面向智能生活的mxene传感器原理与结构设计

IF 24.5 Q1 CHEMISTRY, PHYSICAL
Tianyue Xu, Qinglong He, Hao Chen, Yiwen Chen, Chuijin Zeng, Zhuo Li, Shungui Deng, Chuanfang Zhang
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引用次数: 0

摘要

二维(2D)过渡金属碳化物、碳氮化物和氮化物被称为MXenes,在二维材料的前沿得到了广泛的研究。优异的机械性能、导电性、优异的光电性能和良好的热稳定性使MXenes在许多领域得到广泛的应用,包括但不限于储能、超级电容器、EMI屏蔽、催化、光电子和传感器。特别是,基于mxene的材料由于其独特的可调表面化学,2D结构和奇异的电气/机械/机电特性而表现出优异的传感性能,这些特性在其他材料中很少发现。本文讨论了MXene在压阻式传感器、柔性传感器、气体传感器和生物传感器等不同类型传感器中的传感特性及其机理。本文还概述了这些基于mxene的传感器在未来智能生活中的独特作用。本文可为基于mxene的传感器的合理设计提供参考,并为相应的场景应用提供有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Principle and Structural Design of MXene-Based Sensors Toward Smart Life

Principle and Structural Design of MXene-Based Sensors Toward Smart Life

Two-dimensional (2D) transition metal carbides, carbonitrides, and nitrides, known as MXenes, have been widely studied at the frontier of 2D materials. The excellent mechanical properties, electrical conductivity, excellent photoelectrical performance, and good thermal stability of MXenes enable wide applications in many fields, including but not limited to energy storage, supercapacitors, EMI shielding, catalysis, optoelectronics, and sensors. In particular, MXene-based materials exhibit exceptional sensing performance due to their unique tunable surface chemistry, 2D architecture, and exotic electrical/mechanical/electromechanical properties, which are rarely found in other materials. This paper discusses the MXene sensing properties and their mechanisms in different types of sensors, including piezoresistive sensors, flexible sensors, gas sensors, and biosensors. The unique roles of these MXene-based sensors toward the future of smart living are also outlined. This article may shed light on the rational design of MXene-based sensors and provide valuable references for corresponding scenario applications.

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