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基于MXene的纤维的最新进展:制备、性能及应用

Recent Advances in MXene-Based Fibers: Fabrication, Performance, and Application.

作者信息

Yang Mengdan, Lou Huiqing, Kong Xiaobing, Pang Rui, Zhang Ding, Meng Weixue, Li Meng, Huang Xinguang, Zhang Shipeng, Shang Yuanyuan, Cao Anyuan

机构信息

Key Laboratory of Material Physics, Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou, 450052, P. R. China.

School of Materials Science and Engineering, Peking University, Beijing, 100871, P. R. China.

出版信息

Small Methods. 2023 Oct;7(10):e2300518. doi: 10.1002/smtd.202300518. Epub 2023 Jul 3.

Abstract

Two-dimensional transition metal carbide/nitrides (MXenes) have recently received extensive attention due to their diverse material types and versatile structures, large-scale production, and excellent properties. MXene sheets possess abundant hydrophilic functional groups on their surface, which enable them to be assembled into macroscopic fibers or compounded with other functional materials to produce composite fibers. This review aims to provide a comprehensive analysis of MXene fibers in terms of their fabrication, structure, properties, and recent applications as flexible and wearable electronics. The review will discuss the principles of different methods used to synthesize MXene fibers and analyze the characteristics of the as-synthesized fibers, with a particular focus on the wet spinning method. The fundamental relationships between the microstructure of MXene fibers and their resulting mechanical and electrical properties will be explored. Furthermore, the review will elaborate on the progress made in MXene-based fibers in the rapidly growing field of wearable electronics applications, provide insights into future development of MXene fiber materials and propose solutions to the challenges facing practical applications.

摘要

二维过渡金属碳化物/氮化物(MXenes)因其多样的材料类型、通用的结构、大规模生产以及优异的性能,近来受到了广泛关注。MXene薄片在其表面拥有丰富的亲水性官能团,这使得它们能够被组装成宏观纤维,或者与其他功能材料复合以制备复合纤维。本综述旨在从MXene纤维的制备、结构、性能以及作为柔性可穿戴电子产品的近期应用等方面提供全面分析。该综述将讨论用于合成MXene纤维的不同方法的原理,并分析所合成纤维的特性,特别关注湿法纺丝法。将探索MXene纤维的微观结构与其所得机械和电学性能之间的基本关系。此外,该综述将详细阐述MXene基纤维在快速发展的可穿戴电子应用领域所取得的进展,深入探讨MXene纤维材料的未来发展,并针对实际应用面临的挑战提出解决方案。

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