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吴兴隆, 郭玉国, 索鎏敏, 胡勇胜, 陈立泉. 锂离子电池用具有分级三维离子电子混合导电网络结构的纳微复合电极材料[J]. 物理, 2011, 40(10): 643-647.
引用本文: 吴兴隆, 郭玉国, 索鎏敏, 胡勇胜, 陈立泉. 锂离子电池用具有分级三维离子电子混合导电网络结构的纳微复合电极材料[J]. 物理, 2011, 40(10): 643-647.
Nano-/micro- composite electrodes with hierarchical three-dimensional mixed conducting networks for lithium-ion batteries[J]. PHYSICS, 2011, 40(10): 643-647.
Citation: Nano-/micro- composite electrodes with hierarchical three-dimensional mixed conducting networks for lithium-ion batteries[J]. PHYSICS, 2011, 40(10): 643-647.

锂离子电池用具有分级三维离子电子混合导电网络结构的纳微复合电极材料

Nano-/micro- composite electrodes with hierarchical three-dimensional mixed conducting networks for lithium-ion batteries

  • 摘要: 文章评述了分级三维离子电子混合导电网络结构和具有该结构的纳微复合电极材料在锂离子电池中的应用等方面的最新研究工作进展.首先介绍了纳微复合电极结构相关概念及其优缺点,然后列举了一些运用此概念设计并构筑出的电极材料实例.研究证明,此新型电极结构能够大幅提高锂离子电池电极材料的储锂性能,并且该结构设计还可推广到其他电化学储能器件中.

     

    Abstract: This article reviews recent progress in nano-/micro- composite electrodes with hierarchical three-dimensional mixed conducting networks for lithium-ion batteries. First, we describe the concept and advantages of the nano-/micro-composite structure with three-dimensional mixed conducting networks. Secondly, we present some examples in which this concept was successfully realized in the electrode design for Li batteries. It has been demonstrated that the storage performance can be significantly improved in such new nanostructure designs. This concept can also be extended to the electrode structure design in other electrochemical devices.

     

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