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SiOx and carbon double-layer coated Si nanorods as anode materials for lithium-ion batteries

机译:SiOx和碳双层涂覆的Si纳米棒作为锂离子电池的负极材料

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SiOx and carbon double-layer coated Si nanorods (SNs@SiOx/C) were prepared by acid etching Si-Al alloy microspheres, followed by chemical thermal decomposition vapour deposition (TVD). The SNs@SiOx/C composite with 22.7% carbon delivers a specific capacity of 813.1 mA h g(-1) for the first cycle at a current density of 400 mA g(-1) with a coulombic efficiency of 68.3%. The SNs@SiOx/C composite also exhibits excellent cycling stability with a reversible capacity of 779 mA h g(-1) over 300 cycles corresponding to a high capacity retention of 95.8%. The double-layer structure of native SiOx and carbon effectively controls the volume expansion of the SNs, prevents the exposure of SNs to the electrolyte and also enhances electronic conductivity.
机译:通过酸腐蚀Si-Al合金微球,然后进行化学热分解气相沉积(TVD),制备了SiOx和碳双层涂覆的Si纳米棒(SNs @ SiOx / C)。含22.7%碳的SNs @ SiOx / C复合材料在400 mA g(-1)的电流密度下具有第一个循环的比容量813.1 mA h g(-1),库仑效率为68.3%。 SNs @ SiOx / C复合材料还表现出出色的循环稳定性,在300个循环中可逆容量为779 mA h g(-1),对应于95.8%的高容量保持率。天然SiOx和碳的双层结构可有效控制SN的体积膨胀,防止SN暴露于电解质中,并增强电子导电性。

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