Cobalt vacancies assisted ion diffusion in Co2AlO4 carbon nanofibers for enhancing lithium battery performance

Cobalt vacancies assisted ion diffusion in Co2AlO4 carbon nanofibers for enhancing lithium battery performance
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钴空位辅助 Co2AlO4 碳纳米纤维中的离子扩散以提高锂电池性能

DOI:
10.1039/d0dt01842b
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发表时间:
2020
影响因子:
4
通讯作者:
Xuan Zhou
Xuan Zhou
中科院分区:
化学2区
文献类型:
--
作者:
Qian Shi;Yin Zhang;Kaiyun Chen;Shuang Yuan;Tieyan Chang;Fanghua Tian;Wei Si;Yangqin Cheng;Kangkang Yao;Sen Yang;Xuan Zhou

文献摘要

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The rational design of one-dimensional nanofibers, concentrating on the compositions, morphology, structure and defects, has emerging importance in the preparation of anode materials with desired performance for lithium-ion batteries. In the present work, we prepared cobalt vacancies enriched Co2AlO4/carbon nanofibers coated with Co2AlO4 nanosheets by using electrospinning and multi-step sintering processes. As the anode of the lithium-ion battery, the as-prepared nanofibers show excellent cycling stability, and particularly the discharge capacity can remain at 627.4 mA h g−1 after 500 cycles under 500 mA g−1. We contributed the improved performances to the carbon-based networks, the presence of cobalt vacancy on Co2AlO4 and the larger specific surface area of the present species. Moreover, density functional theory (DFT) calculations have implied that introducing Co vacancies could reduce the energy barrier of ion diffusion, leading to a faster diffusion rate of lithium ions during cycling. Apparently, the present approach could afford many essential advantages for anode material preparation, such as carbon-based matrix, larger specific surface area and cation vacancy, and more importantly, it can be extended to other spinel mixed transition metal oxides.