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Recent Advances in Nanowire‐Based, Flexible, Freestanding Electrodes for Energy Storage

Li, Qi, Hu, Zhiquan, Liu, Ziang, Zhao, Yunlong, Li, Ming, Meng, Jiashen, Tian, Xiaocong, Xu, Xiaoming and Mai, Liqiang (2018) Recent Advances in Nanowire‐Based, Flexible, Freestanding Electrodes for Energy Storage Chemistry – A European Journal, 24 (69). pp. 18307-18321.

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The rational design of flexible electrodes is essential for achieving high performance in flexible and wearable energy‐storage devices, which are highly desired with fast‐growing demands for flexible electronics. Owing to the one‐dimensional structure, nanowires with continuous electron conduction, ion diffusion channels, and good mechanical properties are particularly favorable for obtaining flexible freestanding electrodes that can realize high energy/power density, while retaining long‐term cycling stability under various mechanical deformations. This Minireview focuses on recent advances in the design, fabrication, and application of nanowire‐based flexible freestanding electrodes with diverse compositions, while highlighting the rational design of nanowire‐based materials for high‐performance flexible electrodes. Existing challenges and future opportunities towards a deeper fundamental understanding and practical applications are also presented.

Item Type: Article
Divisions : Faculty of Engineering and Physical Sciences > Electronic Engineering > Advanced Technology Institute
Authors :
Li, Qi
Hu, Zhiquan
Liu, Ziang
Li, Ming
Meng, Jiashen
Tian, Xiaocong
Xu, Xiaoming
Mai, Liqiang
Date : 10 December 2018
DOI : 10.1002/chem.201803658
Depositing User : Maria Rodriguez-Marquez
Date Deposited : 30 May 2019 13:47
Last Modified : 30 May 2019 13:47

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