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Low Temperature Vacuum Synthesis of Triangular CoO Nanocrystal/Graphene Nanosheets Composites with Enhanced Lithium Storage Capacity

机译:低温真空合成具有增强锂存储能力的三角形CoO纳米晶/石墨烯纳米片复合材料

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摘要

CoO nanocrystal/graphene nanosheets (GNS) composites, consisting of a triangular CoO nanocrystal of 2~20 nm on the surface of GNS, are synthesized by a mild synthetic method. First, cobalt acetate tetrahydrate is recrystallized in the alcohol solution at a low temperature. Then, graphene oxide mixed with cobalt-precursor followed by high vacuum annealing to form the CoO nanocrystal/GNS composites. The CoO nanocrystal/GNS composites exhibit a high reversible capacity of 1481.9 m Ah g−1 after 30 cycles with a high Coulombic efficiency of over 96% when used as anode materials for lithium ion battery. The excellent electrochemical performances may be attributed to the special structure of the composites. The well-dispersed triangular CoO nanocrystal on the substrate of conductive graphene can not only have a shorter diffusion length for lithium ions, better stress accommodation capability during the charge-discharge processes and more accessible active sites for lithium-ion storage and electrolyte wetting, but also possess a good conductive network, which can significantly improve the whole electrochemical performance.
机译:采用温和的合成方法合成了由GNS表面2〜20 nm的三角形CoO纳米晶组成的CoO纳米晶/石墨烯纳米片(GNS)复合材料。首先,乙酸钴四水合物在醇溶液中在低温下重结晶。然后,将氧化石墨烯与钴前体混合,然后进行高真空退火以形成CoO纳米晶体/ GNS复合材料。 30次循环后,CoO纳米晶体/ GNS复合材料具有1481.9 m Ah g -1 的高可逆容量,用作锂离子电池负极材料时库仑效率超过96%。优异的电化学性能可归因于复合材料的特殊结构。导电石墨烯基材上分散良好的三角形CoO纳米晶体不仅可以缩短锂离子的扩散长度,在充放电过程中具有更好的应力适应能力,而且可以更方便地用于锂离子存储和电解质润湿的活性位,但还具有良好的导电网络,可显着提高整体电化学性能。

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