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首页> 外文期刊>Metallurgical and Materials Transactions, E. Materials for Energy Systems >Molten Salt Electrolytically Produced Carbon/Tin Nanomaterial as the Anode in a Lithium Ion Battery
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Molten Salt Electrolytically Produced Carbon/Tin Nanomaterial as the Anode in a Lithium Ion Battery

机译:熔盐电解生产的碳/纳米材料作为锂离子电池中的阳极

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摘要

A carbon/tin nanomaterial, consisting of predominantly Sn-filled carbon nanotubes and nanoparticles, is prepared by molten salt electrochemistry, using electrodes of graphite and an electrolyte of LiCl salt containing a small admixture of SnCl_2. The C/Sn hybrid material generated is incorporated into the active anode material of a lithium ion battery and tested with regard to storage capacity and cycling behavior. The results demonstrate that the C/Sn material has favorable properties, in terms of energy density and in particular long-term stability, that exceed those of the individual components alone. The initial irreversible capacity of the material is somewhat larger than that of conventional battery graphite which is due to its unique nanostructure. Overall the results would indicate the suitability of this material for use in the anodes of lithium ion batteries with high rate capability.
机译:由主要的Sn填充的碳纳米管和纳米颗粒组成的碳/锡纳米材料是通过熔融盐电化学制备的,使用石墨电极和含有SnCl_2的小混合物的LiCl盐的电解质来制备。 产生的C / Sn混合材料被掺入锂离子电池的活性阳极材料中,并在储存容量和循环行为方面进行测试。 结果表明,C / Sn材料在能量密度和特别是长期稳定性方面具有良好的性质,其超出单独的单独组分的长期稳定性。 材料的初始不可逆容量略大于传统电池石墨的容量,这是由于其独特的纳米结构。 总体而言,结果表明该材料适用于具有高速率能力的锂离子电池的阳极。

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