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首页> 外文期刊>Journal of solid state electrochemistry >Practical anodes for Li-ion batteries comprising metallurgical silicon particles and multiwall carbon nanotubes
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Practical anodes for Li-ion batteries comprising metallurgical silicon particles and multiwall carbon nanotubes

机译:用于锂离子电池的实用阳极,包括冶金硅颗粒和多壁碳纳米管

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摘要

Silicon is considered to be a very attractive anode material for next-generation lithium-ion batteries due to its high theoretical capacity (4200mAhg of silicon for a stoichiometry of Li4.4Si) and the abundance of silicon in the Earth's crust. To overcome some of the fundamental challenges of silicon anodes (such as conductivity and volume expansion effects in the anodes), multiwall carbon nanotubes (MWCNT) were added to the metallurgical silicon anode material. The superior properties of CNT, as well as their low density and enormous aspect ratio, make them ideal candidates for reinforcement and conductive additives for composite electrodes. The selection of appropriate binder and electrolyte solution is also very important for achieving good performance Li-Si anodes. Here, we report the use of micrometer-sized metallurgical Si particles as the anode material in Li-ion batteries, with MWCNT in the composite electrodes. With 5% MWCNT, the first cycle efficiency was 90%. These Si anodes demonstrated average cycling efficiency of 99.5% and reasonable capacity retention during prolonged cycling. Full cells with LiNi0.8Co0.15Al0.05O2 cathodes were also demonstrated. We believe that upon optimization, such composite silicon electrodes based on relatively cheap and available materials, in terms of both additives (CNT) and binders, may be used as promising practical anodes for Li-ion batteries.
机译:由于其高理论能力(4200mAhg硅的Li4.4Si的化学计量)和地壳中的硅的丰度,因此被认为是下一代锂离子电池的非常有吸引力的阳极材料。为了克服硅阳极的一些基本挑战(例如阳极中的电导率和体积膨胀效应),将多壁碳纳米管(MWCNT)加入到冶金硅阳极材料中。 CNT的优异性能以及它们的低密度和巨大纵横比,使其成为复合电极的增强和导电添加剂的理想候选者。选择合适的粘合剂和电解质溶液对于实现良好的性能Li-Si阳极也非常重要。在这里,我们报告使用微米尺寸的冶金Si颗粒作为锂离子电池中的阳极材料,在复合电极中具有MWCNT。含有5%MWCNT,第一循环效率为90%。这些Si阳极在长期循环期间表现出99.5%的平均循环效率和合理的能力保留。还证明了具有LINI0.8CO0.15A10.05O2阴极的全细胞。我们认为,在优化时,基于相对便宜和可用的材料的这种复合硅电极,就两种添加剂(CNT)和粘合剂而言,可以用作锂离子电池的有希望的实用阳极。

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