Jia Chao, Xu Zhe, Luo Dianfeng, Xiang Hengxue, Zhu Meifang
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620 China.
Adv Fiber Mater. 2022;4(4):573-603. doi: 10.1007/s42765-022-00133-y. Epub 2022 Feb 11.
Flexible ceramic fibers (FCFs) have been developed for various advanced applications due to their superior mechanical flexibility, high temperature resistance, and excellent chemical stability. In this article, we present an overview on the recent progress of FCFs in terms of materials, fabrication methods, and applications. We begin with a brief introduction to FCFs and the materials for preparation of FCFs. After that, various methods for preparation of FCFs are discussed, including centrifugal spinning, electrospinning, solution blow spinning, self-assembly, chemical vapor deposition, atomic layer deposition, and polymer conversion. Recent applications of FCFs in various fields are further illustrated in detail, including thermal insulation, air filtration, water treatment, sound absorption, electromagnetic wave absorption, battery separator, catalytic application, among others. Finally, some perspectives on the future directions and opportunities for the preparation and application of FCFs are highlighted. We envision that this review will provide readers with some meaningful guidance on the preparation of FCFs and inspire them to explore more potential applications.
柔性陶瓷纤维(FCFs)因其卓越的机械柔韧性、耐高温性和出色的化学稳定性,已被开发用于各种先进应用。在本文中,我们从材料、制备方法和应用方面对柔性陶瓷纤维的最新进展进行了综述。我们首先简要介绍了柔性陶瓷纤维以及用于制备柔性陶瓷纤维的材料。在此之后,讨论了制备柔性陶瓷纤维的各种方法,包括离心纺丝、静电纺丝、溶液吹纺、自组装、化学气相沉积、原子层沉积和聚合物转化。进一步详细说明了柔性陶瓷纤维在各个领域的最新应用,包括隔热、空气过滤、水处理、吸声、电磁波吸收、电池隔膜、催化应用等。最后,强调了关于柔性陶瓷纤维制备和应用的未来方向及机遇的一些观点。我们设想,这篇综述将为读者在柔性陶瓷纤维的制备方面提供一些有意义的指导,并激发他们探索更多潜在应用。