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通过厚度对齐的碳纤维框架实现的低曲折度、高导电性和高面积容量的电池电极。

Low Tortuous, Highly Conductive, and High-Areal-Capacity Battery Electrodes Enabled by Through-thickness Aligned Carbon Fiber Framework.

作者信息

Shi Baohui, Shang Yuanyuan, Pei Yong, Pei Shaopeng, Wang Liyun, Heider Dirk, Zhao Yong Y, Zheng Chaolun, Yang Bao, Yarlagadda Shridhar, Chou Tsu-Wei, Fu Kun Kelvin

机构信息

Department of Mechanical Engineering, University of Delaware, Newark, Delaware 19716, United States.

Department of Mechanical Engineering, University of Maryland, College Park, Maryland 20742, United States.

出版信息

Nano Lett. 2020 Jul 8;20(7):5504-5512. doi: 10.1021/acs.nanolett.0c02053. Epub 2020 Jun 24.

Abstract

Thick electrode with high-areal-capacity is a practical and promising strategy to increase the energy density of batteries, but development toward thick electrode is limited by the electrochemical performance, mechanical properties, and manufacturing approaches. In this work, we overcome these limitations and report an ultrathick electrode structure, called fiber-aligned thick or FAT electrode, which offers a novel electrode design and a scalable manufacturing strategy for high-areal-capacity battery electrodes. The FAT electrode uses aligned carbon fibers to construct a through-thickness fiber-aligned electrode structure with features of high electrode material loading, low tortuosity, high electrical and thermal conductivity, and good compression property. The low tortuosity of FAT electrode enables fast electrolyte infusion and rapid electron/ion transport, exhibiting a higher capacity retention and lower charge transfer resistance than conventional slurry-casted thick electrode design.

摘要

具有高面容量的厚电极是提高电池能量密度的一种切实可行且颇具前景的策略,但厚电极的发展受到其电化学性能、机械性能和制造方法的限制。在这项工作中,我们克服了这些限制,并报告了一种超厚电极结构,称为纤维排列厚电极或FAT电极,它为高面容量电池电极提供了一种新颖的电极设计和可扩展的制造策略。FAT电极使用排列的碳纤维构建了一种贯穿厚度的纤维排列电极结构,具有高电极材料负载、低曲折度、高电导率和热导率以及良好压缩性能等特点。FAT电极的低曲折度使得电解质能够快速注入,电子/离子传输迅速,与传统的浆料浇铸厚电极设计相比,表现出更高的容量保持率和更低的电荷转移电阻。

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