Li Fengchao, Zhao Shuiying, Wang Hongyan, Zhu Guang, Li Hongpeng
Key Laboratory of Spin Electron and Nanomaterials of Anhui Higher Education Institutes, School of Mechanical and Electronic Engineering, Suzhou University, Suzhou, 234000, China.
College of Mechanical Engineering, Yangzhou University, Yangzhou, 225127, China.
Chem Asian J. 2023 Aug 15;18(16):e202300474. doi: 10.1002/asia.202300474. Epub 2023 Jul 24.
With the impetus of flexible electronics and micro-nano fabrication technology, the human demand for flexible intelligent wearable devices is on an upsurge. In recent years, new functional fibers have undergone rapid development and emerged as an indispensable carrier of flexible wearable e-textiles. However, to achieve their functional applications and durability, new functional fibers must possess good electrical and mechanical properties. As an emerging two-dimensional material, MXenes have attracted immense attention for their high electrical conductivity, mechanical strength, specific surface area, adjustable surface properties, and exceptional processability. As such, MXenes have become an ideal candidate for the primary functional component of functional fibers. This paper presents a comprehensive review of research progress on MXene-based fibers in the construction of flexible wearable electronic textiles. Firstly, we briefly outline the preparation methods of MXenes materials. Next, we summarize the processing types of MXene-based fibers and highlight their performance parameters. Lastly, we summarize the primary application scenarios of MXene-based fibers and anticipate the future development of flexible wearable e-textiles.
在柔性电子学和微纳制造技术的推动下,人类对柔性智能可穿戴设备的需求正处于高涨阶段。近年来,新型功能纤维得到了快速发展,并成为柔性可穿戴电子织物不可或缺的载体。然而,为了实现其功能应用和耐久性,新型功能纤维必须具备良好的电学和力学性能。作为一种新兴的二维材料,MXenes因其高导电性、机械强度、比表面积、可调节的表面性质和出色的可加工性而备受关注。因此,MXenes已成为功能纤维主要功能组件的理想候选材料。本文全面综述了基于MXene的纤维在柔性可穿戴电子织物构建方面的研究进展。首先,我们简要概述了MXenes材料的制备方法。接下来,我们总结了基于MXene的纤维的加工类型,并突出了它们的性能参数。最后,我们总结了基于MXene的纤维的主要应用场景,并展望了柔性可穿戴电子织物的未来发展。