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Low-cost carbon-coated Si-Cu3Si-Al2O3 nanocomposite anodes for high-performance lithium-ion batteries

机译:用于高性能锂离子电池的低成本碳包覆Si-Cu3Si-Al2O3纳米复合阳极

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摘要

Carbon-coated Si-Cu3Si-Al2O3 nanocomposites have been synthesized via a facile mechanochemical reaction and employed as anode materials for lithium-ion batteries. Combined X-ray and microscopic studies show that the nanocomposites are composed of agglomerated nanostructured particles with uniform distribution of crystalline silicon, Cu3Si, and amorphous Al2O3. Electrochemical characterization reveals that the in situ incorporation of both the conductive Cu3Si and electrochemically stable Al2O3 phases results in a dramatic improvement of cyclability and rate capability, while the specific capacity decreases with increasing amount of Cu3Si. By controlling the Cu3Si content, the composite with a high tap density of similar to 1.2 g cm(-3) delivers a high reversible capacity of 841 mA h g(-1), excellent cyclability, and good rate performance up to 3.2 A g(-1) in half cells. Full-cell test coupled with a commercial spinel cathode also displays a high average operating voltage of >3.5 V, a relatively good capacity retention of similar to 77.2% after 50 cycles with a high initial efficiency of similar to 86.3%. The enhanced electrochemical performance is mainly attributed to the presence of the conductive Cu3Si buffer phase that mitigates structural degradation and offers high conductivity. (C) 2016 Elsevier B.V. All rights reserved.
机译:碳包覆的Si-Cu3Si-Al2O3纳米复合材料是通过容易的机械化学反应合成的,并被用作锂离子电池的负极材料。 X射线和显微镜相结合的研究表明,纳米复合材料由团聚的纳米结构颗粒组成,这些颗粒具有均匀分布的晶体硅,Cu3Si和非晶态Al2O3。电化学表征表明,导电Cu3Si相和电化学稳定的Al2O3相的原位结合可显着改善循环能力和速率能力,而比容量则随Cu3Si含量的增加而降低。通过控制Cu3Si的含量,复合材料具有接近1.2 g cm(-3)的高抽头密度,可提供841 mA hg(-1)的高可逆容量,出色的循环性能以及高达3.2 A g( -1)在半格中。全电池测试与市售尖晶石阴极相结合还显示出> 3.5 V的高平均工作电压,在50个循环后具有约77.2%的相对良好的容量保持率,且具有约86.3%的高初始效率。增强的电化学性能主要归因于导电Cu3Si缓冲相的存在,该缓冲相减轻了结构退化并提供了高电导率。 (C)2016 Elsevier B.V.保留所有权利。

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