Recent Advances in Multi‐Scale Piezoresistive Interfaces for MXene‐Based Flexible Sensors

Author:

Ge Chengqi1,Sun Beibei2,Huang Yanhui2,Alahi Md. Eshrat E.3,Ma Qian1,Wei Song14,Hui Yun5,Huang Zhaoling14,Zeng Qi56ORCID

Affiliation:

1. School of Mechanical and Electrical Engineering Guilin University of Electronic Technology Guilin 541004 China

2. Anhui North Microelectronics Research Institute Group Co. Ltd Bengbu 233000 China

3. School of Engineering and Technology Walailak University 222 Thaiburi, Thasala Nakhon Si Tham‐marat 80160 Thailand

4. Guangxi Key Laboratory of Manufacturing System and Advanced Manufacturing Technology Guilin University of Electronic Technology Guilin 541004 China

5. Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 China

6. School of Physics and Optoelectronic Engineering Shenzhen University Shenzhen 518061 China

Abstract

AbstractFlexible piezoresistive sensors hold great promise in biomedicine and personal motion detection, attracting significant attention from researchers. Particularly, two‐dimensional (2D) MXene has made remarkable strides in biomedicine, electromagnetic shielding, and other practical applications, due to its exceptional hydrophilicity, biocompatibility, mechanical properties, surface functional groups, and large specific surface area. The ease of composite material formation further makes it ideal for high‐sensitivity flexible sensors. This paper summarizes the principal structural configurations for the multi‐scale interfaces, performance assessment metrics, and the corresponding sensing mechanisms of flexible piezoresistive sensors. Subsequently, the main characteristics and synthesis methods of MXene, especially the related applications and parameters are introduced in detail. The research trends and typical applications of MXene‐based flexible piezoresistive sensors focused on film structures, fiber structures, 3D structures, and hydrogel structures, are highlighted systematically. In addition, the challenges and prospects that promoting the advancement of MXene‐based flexible piezoresistive sensors in future are also discussed, which will revolutionize the sensing field and offer a wealth of opportunities in biomedicine and beyond.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangxi Province

Natural Science Foundation of Guizhou Province

Guangxi Key Lab of Manufacturing System and Advanced Manufacturing Technology

Publisher

Wiley

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