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通过构建全无粘结剂电极材料开发的高性能超柔性水系可充电锂离子电池

High-Performance and Ultraflexible Aqueous Rechargeable Lithium-Ion Batteries Developed by Constructing All Binder-free Electrode Materials.

作者信息

Man Ping, He Bing, Zhang Qichong, Li Chaowei, Zhou Zhenyu, Li Qiulong, Xu Weigao, Hong Guo, Yao Yagang

机构信息

School of Nano Technology and Nano Bionics, University of Science and Technology of China, Hefei 230026, China.

National Laboratory of Solid State Microstructures, College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210093, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 10;12(23):25700-25708. doi: 10.1021/acsami.0c00341. Epub 2020 May 28.

Abstract

Aqueous rechargeable lithium-ion batteries (ARLIBs) as alternative energy storage devices have attracted tremendous attention because of their low cost and high safety. However, it is still a significant challenge to develop flexible high-performance ARLIBs for powering wearable devices because of the lack of all binder-free electrode materials. In this study, we develop one-step hydro-/solvothermal methods to design binder-free electrodes of LiCoO polygonal-sheeted arrays and rugby ball-shaped NaTi(PO) on carbon nanotube fibers as the cathode (LCO@CNTF) and the anode (NTP@CNTF). Both the electrodes are prepared at low temperatures without an extra calcination process, which is a great improvement for the growth process. The electrodes deliver remarkable capacity and extraordinary rate performance in a saturated LiSO solution. Meanwhile, because of the synergy of LCO@CNTF and NTP@CNTF, an impressive capacity of 45.24 mA h cm and an admirable energy density of 67.86 mW h cm are achieved for the assembled quasi-solid-state fiber-shaped flexible ARLIB (FARLIB), which outperform most reported fiber-shaped aqueous rechargeable batteries. More encouragingly, our FARLIB possesses good flexibility, with a 94.74% capacity retention after bending 3000 times. Thus, this work represents a significant step toward developing FARLIBs and provides a new prospect in the design of wearable energy storage devices.

摘要

水系可充电锂离子电池(ARLIBs)作为替代储能装置,因其低成本和高安全性而备受关注。然而,由于缺乏全无粘结剂电极材料,开发用于可穿戴设备供电的柔性高性能ARLIBs仍然是一项重大挑战。在本研究中,我们开发了一步水热/溶剂热法,以设计碳纳米管纤维上的LiCoO多边形片状阵列和橄榄球状NaTi(PO)的无粘结剂电极,分别作为阴极(LCO@CNTF)和阳极(NTP@CNTF)。这两种电极均在低温下制备,无需额外的煅烧过程,这对生长过程是一个很大的改进。在饱和LiSO溶液中,这些电极展现出卓越的容量和非凡的倍率性能。同时,由于LCO@CNTF和NTP@CNTF的协同作用,组装的准固态纤维状柔性ARLIB(FARLIB)实现了令人印象深刻的45.24 mA h cm的容量和67.86 mW h cm的能量密度,优于大多数已报道的纤维状水系可充电电池。更令人鼓舞的是,我们的FARLIB具有良好的柔韧性,弯曲3000次后容量保持率为94.74%。因此,这项工作代表了开发FARLIBs的重要一步,并为可穿戴储能设备的设计提供了新的前景。

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