首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A solvothermal strategy: one-step in situ synthesis of self-assembled 3D graphene-based composites with enhanced lithium storage capacity
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A solvothermal strategy: one-step in situ synthesis of self-assembled 3D graphene-based composites with enhanced lithium storage capacity

机译:溶剂热策略:一步一步原位合成具有增强的锂储存能力的自组装3D石墨烯基复合材料

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摘要

A facile and controllable approach has been developed to synthesize three-dimensional (3D) graphene-based monoliths. Here, as a proof-of-concept experiment, self-assembled 3D CoO/graphene sheets (CoO/GS) composites with porous structures have been successfully fabricated in an ethanol medium by a one-step, in situ growth, solvothermal method. During the process, the in situ nucleation and growth of CoO particles on GS were tuned by the formation of a 3D GS network. In the as-prepared composites, the self-assembled 3D GS network around the CoO particles can not only provide a 3D conductive matrix, but also buffer the volume changes of CoO and restrain the aggregation of CoO particles during charge-discharge cycling. The CoO particles, which are uniformly anchored into the 3D GS framework, can also act as spacers to effectively avoid the close restacking of GS. Compared to the bare CoO, the 3D CoO/GS composites as Li-ion battery anodes show dramatically improved electrochemical performance, including cycling stability and rate capability, owing to the unique self-assembled 3D structure and the superior synergistic effect between the two components. Such a synthesis strategy can be a promising route to produce diverse 3D graphene-based monoliths in various solvents.
机译:已经开发了一种简便且可控制的方法来合成三维(3D)石墨烯基整体材料。在这里,作为概念验证实验,已经通过一步法原位生长溶剂热法成功地在乙醇介质中制备了具有多孔结构的自组装3D CoO /石墨烯片(CoO / GS)复合材料。在此过程中,通过3D GS网络的形成调整了GS上CoO颗粒的原位成核和生长。在准备好的复合材料中,围绕CoO颗粒的自组装3D GS网络不仅可以提供3D导电基质,而且可以缓冲CoO的体积变化并在充放电循环过程中抑制CoO颗粒的聚集。均匀地锚定在3D GS框架中的CoO颗粒还可以充当隔离物,以有效避免GS的紧密堆积。与裸露的CoO相比,3D CoO / GS复合材料作为锂离子电池阳极,由于独特的自组装3D结构以及两种组分之间的卓越协同作用,显示出显着改善的电化学性能,包括循环稳定性和倍率性能。这种合成策略可能是在各种溶剂中生产各种基于3D石墨烯的整料的有前途的途径。

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