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北京大学化学与分子工程学院高分子科学与工程系教育部重点实验室,北京 100871
*E-mail:dczou@pku.edu.cn.
纸质出版日期:2014-08,
收稿日期:2014-05-27,
修回日期:2014-06-16,
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蔡欣, 侯绍聪, 于潇, 吴红伟, 彭鸣, 邹德春. 碳纤维基能源器件研究和应用进展[J]. 高分子通报, 2014,27(8):69-83.
Xin CAI, Shao-cong HOU, Xiao YU, Hong-wei WU, Ming PENG, De-chun ZOU. Recent Progress on Carbon Fiber-based Energy Devices[J]. Polymer Bulletin, 2014,27(8):69-83.
半个多世纪以来,碳纤维及碳纤维增强复合材料因其优异的力学性能、比强度、比模量、轻质、导电性以及热/化学稳定性,逐渐成为航空航天、建筑、运输、生物医用、体育用品以及电子电气等诸多应用领域一类非常重要的高性能结构材料。近二十多年来,得益于纳米材料与技术以及高效可再生能源器件的迅速发展,力学性能突出的碳纤维(包括工业化碳纤维、碳纤维织物、碳纳米纤维以及碳纳米管纤维等)凭借高的导电性、电化学特性、多孔以及表面可修饰性等优点,开始作为良好的电极材料应用于多种电化学能源器件与光电转换能源器件中,并得到了广泛的研究。本文首次综述了碳纤维基能源器件的研究进展,从认识碳纤维的发展历史与应用出发,介绍了碳纤维的表面功能化与电极制备的相关基础知识,重点综述了当前国内外碳纤维能源器件的发展概况,详细介绍了碳纤维作为功能电极材料在燃料电池、微生物燃料电池、锂离子电池、电化学电容器以及太阳能电池等领域的研究和发展概况。最后,通过分析当前碳纤维能源器件研究领域的现状,对该领域在材料制备工艺、电极设计、器件性能优化与器件集成技术等方面面临的挑战和未来研究方向进行了预测和探讨。
In virtue of the excellent mechanical performance
high specific strength and specific modulus
light weight
electrical conductivity and good thermal/chemical stability
carbon fibers (CFs) and carbon fiber reinforced composites have been utilized as high performance structural materials in aircraft
aerospace
construction
transportation
biomedical devices
sporting goods and electrical-related application fields over half a century. During the past two decades
benefiting from the rapid development of nanomaterials
nanotechnology and efficient renewable energy devices
CFs (e. g. commercial carbon fibers
carbon fiber fabrics
carbon nanofibers and carbon nanotube fibers
etc. ) with exceptional mechanical properties have been extensively adopted and investigated as alternative electrode materials in a variety of electrochemical and photoelectrical conversion devices due to their advantages of good conductivity
electrochemical properties
porosity and surface modifications. For the first time
this study reviewed the research development of current CF-based energy devices. With an understanding of the development history and applications of CFs
several fundamental knowledge about the CF surface functionalization and electrode preparation were introduced. Then
this work overviewed the recent progress on CF-based energy devices
with a focus on the research development and applications of carbon fibers as functional electrode materials for fuel cells
microbial fuel cell
lithium ion batteries
electrochemical capacitors and solar cells. Finally
through the summary of the state-of-the-art CF-based energy devices
predictions and insights into the challenges and the future development trends on the material preparations
electrode design
optimization of device performances and device integration technologies were proposed.
聚丙烯腈碳纤维能源器件光电化学太阳能电池
Polyacrylonitrile (PAN)Carbon fiberEnergy devicesPhotoelectrochemicalSolar cells
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