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Facile fabrication of composited Mn3O4/Fe3O4 nanoflowers with high electrochemical performance as anode material for lithium ion batteries

机译:具备高电化学性能的Mn3O4 / Fe3O4纳米复合花的制备方法,可作为锂离子电池的负极材料

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Mn3O4/Fe3O4 nanoflowers with controllable components are simply fabricated through one step etching of the Mn5Fe5Al90 ternary alloy. The as-made hierarchical flower-like structure with interconnected voids consists of a packed array of uniform regular hexagon-like nanoslices. Based on the simple dealloying strategy the target metals are directly converted to uniform nanocomposite composed of Mn3O4 and Fe3O4 species. With the unique hierarchical flower-like structure and the synergistic effects between Mn3O4 and Fe3O4, the nanocomposite exhibits higher performance as anode material for lithium ion batteries than that of pure Mn3O4 and Fe3O4 anodes. The Mn3O4/Fe3O4 nanocomposite deliver much higher discharge capacity and lower initial irreversible loss than Mn3O4 anode. The Mn3O4/Fe3O4 anode material also shows an excellent cycling stability at the high rate of 1500 mAg(-1) with outstanding rate capability. With the advantages of simple preparation and excellent electrochemical performance, Mn3O4/Fe3O4 nanoflowers manifest great application potential as anode material for lithium ion batteries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:具有可控成分的Mn3O4 / Fe3O4纳米花可通过对Mn5Fe5Al90三元合金进行一步蚀刻来简单地制造。制成的具有相互连接的空隙的分层花状结构由均匀规则的六边形纳米切片的堆积阵列组成。基于简单的脱合金策略,目标金属直接转化为由Mn3O4和Fe3O4组成的均匀纳米复合材料。凭借独特的分层花状结构以及Mn3O4和Fe3O4之间的协同效应,该纳米复合材料作为锂离子电池的负极材料表现出比纯Mn3O4和Fe3O4负极更高的性能。 Mn3O4 / Fe3O4纳米复合材料比Mn3O4阳极具有更高的放电容量和更低的初始不可逆损耗。 Mn3O4 / Fe3O4阳极材料在1500 mAg(-1)的高倍率下也显示出出色的循环稳定性,并具有出色的倍率能力。 Mn3O4 / Fe3O4纳米花具有制备简单,电化学性能优异的优点,具有作为锂离子电池负极材料的巨大应用潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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