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首页> 外文期刊>ACS nano >Lithium Ion Battery Peformance of Silicon Nanowires with Carbon Skin
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Lithium Ion Battery Peformance of Silicon Nanowires with Carbon Skin

机译:碳皮硅纳米线的锂离子电池性能

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Silicon (Si) nanomaterials have emerged as a leading candidate for next generation lithium-ion battery anodes. However, the low electrical conductivity of Si requires the use of conductive additives in the anode film. Here we report a solutionbased synthesis of Si nanowires with a conductive carbon skin. Without any conductive additive, the Si nanowire electrodes exhibited capacities of over 2000 mA h g~(-1) for 100 cycles when cycled at C/10 and over 1200 mA h g~(-1) when cycled more rapidly at 1C against Li metal. In situ transmission electron microscopy (TEM) observation reveals that the carbon skin performs dual roles: it speeds lithiation of the Si nanowires significantly, while also constraining the final volume expansion. The present work sheds light on ways to optimize lithium battery performance by smartly tailoring the nanostructure of composition of materials based on silicon and carbon.
机译:硅(Si)纳米材料已成为下一代锂离子电池阳极的主要候选材料。然而,Si的低电导率要求在阳极膜中使用导电添加剂。在这里,我们报告了一种基于溶液的具有导电碳皮的Si纳米线的合成方法。在没有任何导电添加剂的情况下,Si纳米线电极在C / 10循环时表现出超过100 mA h g〜(-1)的容量超过2000 mA h g〜(-1),而在1C下相对于Li金属则表现出超过1200 mA h g〜(-1)的容量。原位透射电子显微镜(TEM)观察表明,碳皮具有双重作用:它显着加快了Si纳米线的锂化速度,同时也限制了最终的体积膨胀。本工作揭示了通过巧妙地定制基于硅和碳的材料组成的纳米结构来优化锂电池性能的方法。

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