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Role of carbon host lattices in Li-ion intercalation/de-intercalation processes

机译:碳主体晶格在锂离子嵌入/脱嵌过程中的作用

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摘要

Despite considerable efforts to find other substituents, carbon still remains the only commercially viable negative electrode (anode) material for Li-on batteries. Present work aimed at understanding, characterising and improving the performance of carbon anode materials is reviewed. A brief historical background of developments in carbon host lattices is presented. A wide range of carbon materials from amorphous to highly oriented graphitic materials and the techniques employed in characterisation of the lithium insertion/de-insertion process are outlined. Fundamental investigations of the electrochemical process on natural graphite, as well as highly oriented pyrolitic graphite materials, are then comprehensively reviewed. The problems and prospects of different hard carbon materials which increased battery capacity are then discussed. A variety of new carbon materials and carbon-based composites are also introduced. The critical review ends with an overview of the present status of carbon materials and their role in Li-ion battery systems for different potential applications.
机译:尽管为寻找其他取代基付出了巨大的努力,但碳仍然是锂离子电池唯一在商业上可行的负极(阳极)材料。综述了旨在理解,表征和改善碳阳极材料性能的当前工作。介绍了碳基质晶格发展的简要历史背景。概述了从无定形材料到高度取向的石墨材料的各种碳材料,以及表征锂插入/去插入过程的技术。然后,对天然石墨以及高度取向的热解石墨材料的电化学过程进行了基础研究。然后讨论了增加电池容量的不同硬碳材料的问题和前景。还介绍了各种新型碳材料和碳基复合材料。关键的审查以碳材料的现状及其在不同潜在应用的锂离子电池系统中的作用概述为结尾。

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