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An Effective Way to Optimize the Functionality of Graphene-Based Nanocomposite: Use of the Colloidal Mixture of Graphene and Inorganic Nanosheets

机译:优化基于石墨烯的纳米复合材料功能的有效方法:石墨烯和无机纳米片的胶体混合物的使用

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摘要

The best electrode performance of metal oxide–graphene nanocomposite material for lithium secondary batteries can be achieved by using the colloidal mixture of layered CoO2 and graphene nanosheets as a precursor. The intervention of layered CoO2 nanosheets in-between graphene nanosheets is fairly effective in optimizing the pore and composite structures of the Co3O4–graphene nanocomposite and also in enhancing its electrochemical activity via the depression of interaction between graphene nanosheets. The resulting CoO2 nanosheet-incorporated nanocomposites show much greater discharge capacity of ~1750 mAhg−1 with better cyclability and rate characteristics than does CoO2-free Co3O4–graphene nanocomposite (~1100 mAhg−1). The huge discharge capacity of the present nanocomposite is the largest one among the reported data of cobalt oxide–graphene nanocomposite. Such a remarkable enhancement of electrode performance upon the addition of inorganic nanosheet is also observed for Mn3O4–graphene nanocomposite. The improvement of electrode performance upon the incorporation of inorganic nanosheet is attributable to an improved Li+ ion diffusion, an enhanced mixing between metal oxide and graphene, and the prevention of electrode agglomeration. The present experimental findings underscore an efficient and universal role of the colloidal mixture of graphene and redoxable metal oxide nanosheets as a precursor for improving the electrode functionality of graphene-based nanocomposites.
机译:通过使用分层的CoO2和石墨烯纳米片的胶体混合物作为前体,可以实现锂二次电池用金属氧化物-石墨烯纳米复合材料的最佳电极性能。石墨烯纳米片之间的分层CoO2纳米片的干预在优化Co3O4-石墨烯纳米复合材料的孔和复合结构以及通过降低石墨烯纳米片之间的相互作用来增强其电化学活性方面相当有效。与不含CoO2的Co3O4–石墨烯纳米复合材料(〜1100 mAhg −1 <相比),所得的掺有CoO2纳米片的纳米复合材料显示约1750 mAhg -1 更大的放电容量,具有更好的循环性能和速率特性。 / sup>)。在报告的氧化钴-石墨烯纳米复合材料数据中,目前的纳米复合材料的巨大放电容量是最大的。对于Mn3O4-石墨烯纳米复合材料,在添加无机纳米片后,电极性能也得到了显着提高。掺入无机纳米片后电极性能的提高归因于改善的Li + 离子扩散,增强的金属氧化物与石墨烯之间的混合以及防止了电极结块。本实验发现强调了石墨烯和可氧化还原金属氧化物纳米片的胶体混合物作为改进石墨烯基纳米复合材料电极功能的前体的有效和普遍作用。

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