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基于MXene的功能纤维的开发与应用

Development and Applications of MXene-Based Functional Fibers.

作者信息

Qin Si, Usman Ken Aldren S, Hegh Dylan, Seyedin Shayan, Gogotsi Yury, Zhang Jizhen, Razal Joselito M

机构信息

Institute for Frontier Materials, Deakin University, Geelong, Victoria 3216, Australia.

School of Engineering, Newcastle University, Newcastle upon Tyne NE1 7RU, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 11;13(31):36655-36669. doi: 10.1021/acsami.1c08985. Epub 2021 Jul 29.

DOI:10.1021/acsami.1c08985
PMID:34320810
Abstract

The increasing interest toward wearable and portable electronic devices calls for multifunctional materials and fibers/yarns capable of seamless integration with everyday textiles. To date, one particular gap inhibiting the development of such devices is the production of robust functional fibers with improved electronic conductivity and electrochemical energy storage capability. Recent efforts have been made to produce functional fibers with 2D carbides known as MXenes to address these demands. TiCT MXene, in particular, is known for its metallic conductivity and high volumetric capacitance, and has shown promise for fibers and textile-based devices when used either as an additive, coating or the main fiber component. In this spotlight article, we highlight the recent exciting developments in our diverse efforts to fabricate MXene functionalized fibers, along with a critical evaluation of the challenges in processing, which directly affect macroscale material properties and the performance of the subsequent prototype devices. We also provide our assessment of observed and foreseen challenges of the current manufacturing methods and the opportunities arising from recent advances in the development of MXene fibers and paving future avenues for textile design and practical use in advanced applications.

摘要

对可穿戴和便携式电子设备日益增长的兴趣,需要能够与日常纺织品无缝集成的多功能材料和纤维/纱线。迄今为止,阻碍此类设备发展的一个特殊差距在于生产具有改善的电子导电性和电化学储能能力的坚固功能纤维。最近人们已努力使用称为MXenes的二维碳化物来生产功能纤维,以满足这些需求。特别是TiCT MXene,以其金属导电性和高体积电容而闻名,并且在用作添加剂、涂层或主要纤维成分时,已显示出在纤维和基于纺织品的设备方面的潜力。在这篇聚焦文章中,我们重点介绍了我们在制造MXene功能化纤维的各种努力中最近取得的令人兴奋的进展,同时对加工过程中的挑战进行了批判性评估,这些挑战直接影响宏观材料性能和后续原型设备的性能。我们还对当前制造方法中观察到的和可预见的挑战以及MXene纤维开发的最新进展所带来的机遇进行了评估,并为纺织品设计和在先进应用中的实际使用铺平未来道路。

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