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一种核壳结构的Fe/Fe2O3纳米线作为锂离子电池的高性能负极材料

A Core-Shell Fe/Fe2 O3 Nanowire as a High-Performance Anode Material for Lithium-Ion Batteries.

作者信息

Na Zhaolin, Huang Gang, Liang Fei, Yin Dongming, Wang Limin

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, Jilin, P.R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P.R. China.

出版信息

Chemistry. 2016 Aug 16;22(34):12081-7. doi: 10.1002/chem.201601757. Epub 2016 Jul 13.

DOI:10.1002/chem.201601757
PMID:27406922
Abstract

The preparation of novel one-dimensional core-shell Fe/Fe2 O3 nanowires as anodes for high-performance lithium-ion batteries (LIBs) is reported. The nanowires are prepared in a facile synthetic process in aqueous solution under ambient conditions with subsequent annealing treatment that could tune the capacity for lithium storage. When this hybrid is used as an anode material for LIBs, the outer Fe2 O3 shell can act as an electrochemically active material to store and release lithium ions, whereas the highly conductive and inactive Fe core functions as nothing more than an efficient electrical conducting pathway and a remarkable buffer to tolerate volume changes of the electrode materials during the insertion and extraction of lithium ions. The core-shell Fe/Fe2 O3 nanowire maintains an excellent reversible capacity of over 767 mA h g(-1) at 500 mA g(-1) after 200 cycles with a high average Coulombic efficiency of 98.6 %. Even at 2000 mA g(-1) , a stable capacity as high as 538 mA h g(-1) could be obtained. The unique composition and nanostructure of this electrode material contribute to this enhanced electrochemical performance. Due to the ease of large-scale fabrication and superior electrochemical performance, these hybrid nanowires are promising anode materials for the next generation of high-performance LIBs.

摘要

报道了新型一维核壳结构Fe/Fe2O3纳米线作为高性能锂离子电池(LIBs)阳极的制备方法。该纳米线通过在环境条件下的水溶液中进行简便的合成过程制备,并经过后续退火处理以调节锂存储容量。当这种复合材料用作LIBs的阳极材料时,外部的Fe2O3壳层可作为电化学活性材料来存储和释放锂离子,而高导电性且无活性的Fe核仅作为有效的导电路径以及在锂离子嵌入和脱出过程中耐受电极材料体积变化的显著缓冲层。核壳结构的Fe/Fe2O3纳米线在500 mA g(-1)的电流密度下经过200次循环后,仍保持超过767 mA h g(-1)的优异可逆容量,平均库仑效率高达98.6%。即使在2000 mA g(-1)的电流密度下,也能获得高达538 mA h g(-1)的稳定容量。这种电极材料独特的组成和纳米结构促成了其增强的电化学性能。由于易于大规模制备以及优异的电化学性能,这些复合纳米线是下一代高性能LIBs有前景的阳极材料。

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