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CoMn2O4 Spinel Hierarchical Microspheres Assembled with Porous Nanosheets as Stable Anodes for Lithium-ion Batteries

机译:CoMn2O4尖晶石分级微球与多孔纳米片组装作为锂离子电池的稳定阳极

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摘要

Herein, we report the feasibility to enhance the capacity and stability of CoMn2O4 anode materials by fabricating hierarchical mesoporous structure. The open space between neighboring nanosheets allows for easy diffusion of the electrolyte. The hierarchical microspheres assembled with nanosheets can ensure that every nanosheet participates in the electrochemical reaction, because every nanosheet is contacted with the electrolyte solution. The hierarchical structure and well interconnected pores on the surface of nanosheets will enhance the CoMn2O4/electrolyte contact area, shorten the Li+ ion diffusion length in the nanosheets, and accommodate the strain induced by the volume change during the electrochemical reaction. The last, hierarchical architecture with spherical morphology possesses relatively low surface energy, which results in less extent of self-aggregation during charge/discharge process. As a result, CoMn2O4 hierarchical microspheres can achieve a good cycle ability and high rate capability.
机译:在本文中,我们报告了通过制造分级中孔结构来增强CoMn2O4阳极材料的容量和稳定性的可行性。相邻纳米片之间的开放空间使电解质易于扩散。与每个纳米片组装在一起的分层微球可以确保每个纳米片都参与电化学反应,因为每个纳米片都与电解质溶液接触。纳米片表面上的层级结构和良好连通的孔将增强CoMn2O4 /电解质的接触面积,缩短纳米片中Li + 离子的扩散长度,并适应由纳米片中体积变化引起的应变。电化学反应。最后一种具有球形形态的分层体系结构具有相对较低的表面能,这导致在充电/放电过程中自聚集程度较小。结果,CoMn 2 O 4分级微球可以实现良好的循环能力和高倍率能力。

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