State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, and Laboratory of Advanced Materials, Fudan University, Shanghai 200438, P. R. China.
Chem Rev. 2023 Jan 25;123(2):613-662. doi: 10.1021/acs.chemrev.2c00192. Epub 2022 Aug 17.
The development of fiber materials has accompanied the evolution of human civilization for centuries. Recent advances in materials science and chemistry offered fibers new applications with various functions, including energy harvesting, energy storing, displaying, health monitoring and treating, and computing. The unique one-dimensional shape of fiber devices endows them advantages to work as human-interfaced electronics due to the small size, lightweight, flexibility, and feasibility for integration into large-scale textile systems. In this review, we first present a discussion of the basics of fiber materials and the design principles of fiber devices, followed by a comprehensive analysis on recently developed fiber devices. Finally, we provide the current challenges facing this field and give an outlook on future research directions. With novel fiber devices and new applications continuing to be discovered after two decades of research, we envision that new fiber devices could have an important impact on our life in the near future.
纤维材料的发展伴随着人类文明的演进已经有几个世纪了。近年来,材料科学和化学的进步为纤维带来了新的应用,包括能量收集、能量存储、显示、健康监测和治疗以及计算。纤维器件的独特一维形状由于其尺寸小、重量轻、灵活性以及可集成到大尺寸纺织系统中,使它们成为人机交互电子产品的优势。在这篇综述中,我们首先讨论了纤维材料的基础和纤维器件的设计原理,然后对最近开发的纤维器件进行了全面分析。最后,我们提出了该领域面临的当前挑战,并展望了未来的研究方向。经过二十年的研究,新的纤维器件和新的应用不断被发现,我们预计新的纤维器件在不久的将来会对我们的生活产生重要影响。