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Self-organized sheaf-like Fe3O4/C hierarchical microrods with superior lithium storage properties

机译:自组织sheaf-like Fe3O4 / C等级制度microrods与优越的锂存储属性

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Functional nanomaterials with three-dimensional hierarchical structures are of high interest for many practical applications including lithium-ion batteries (LIBs). In this work, self-organized sheaf-like Fe3O4/C microrods constructed by porous nanowires have been synthesized by a facile solvothermal method combined with a subsequent annealing treatment. The morphology of the building blocks could be easily tuned by varying the synthesis parameters. When applied as an anode material for LIBs, these sheaf-like Fe3O4/C porous microrods manifest superior electro-chemical lithium storage properties in terms of high reversible capacity, stable cycling capacity retention and good rate capability.
机译:功能纳米材料与三维层次结构的高利息许多实际应用包括锂离子电池(LIBs)。sheaf-like Fe3O4 / C microrods构造多孔纳米线已经合成了一个简单solvothermal方法结合随后的退火处理。积木可以很容易地调整不同的合成参数。阳极材料的库,这些sheaf-likeFe3O4 / C多孔microrods明显优越电化学锂存储属性的可逆容量高,循环稳定保留能力和良好的速度能力。

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