High-Energy-Density Foldable Battery Enabled by Zigzag-Like Design

Xiangbiao Liao, Changmin Shi, Tianyang Wang, Boyu Qie, Youlong Chen, Pengfei Yang, Qian Cheng, Haowei Zhai, Meijie Chen, Xue Wang, Xi Chen*, Yuan Yang

*此作品的通讯作者

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摘要

Flexible batteries, seamlessly compatible with flexible and wearable electronics, attract a great deal of research attention. Current designs of flexible batteries struggle to meet one of the most extreme yet common deformation scenarios in practice, folding, while retaining high energy density. Inspired by origami folding, a novel strategy to fabricate zigzag-like lithium ion batteries with superior foldability is proposed. The battery structure could approach zero-gap between two adjacent energy storage segments, achieving an energy density that is 96.4% of that in a conventional stacking cell. A foldable battery thus fabricated demonstrates an energy density of 275 Wh L−1 and is resilient to fatigue over 45 000 dynamic cycles with a folding angle of 130°, while retaining stable electrochemical performance. Additionally, the power stability and resilience to nail shorting of the foldable battery are also examined.

源语言英语
文章编号1802998
期刊Advanced Energy Materials
9
4
DOI
出版状态已出版 - 24 1月 2019
已对外发布

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引用此

Liao, X., Shi, C., Wang, T., Qie, B., Chen, Y., Yang, P., Cheng, Q., Zhai, H., Chen, M., Wang, X., Chen, X., & Yang, Y. (2019). High-Energy-Density Foldable Battery Enabled by Zigzag-Like Design. Advanced Energy Materials, 9(4), 文章 1802998. https://doi.org/10.1002/aenm.201802998