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Copper nanofiber-networked cobalt oxide composites for high performance Li-ion batteries

机译:高性能锂离子电池用铜纳米纤维网状氧化钴复合材料

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摘要

We prepared a composite electrode structure consisting of copper nanofiber-networked cobalt oxide (CuNFs@CoOx). The copper nanofibers (CuNFs) were fabricated on a substrate with formation of a network structure, which may have potential for improving electron percolation and retarding film deformation during the discharging/charging process over the electroactive cobalt oxide. Compared to bare CoOxthin-film (CoOxTF) electrodes, the CuNFs@CoOxelectrodes exhibited a significant enhancement of rate performance by at least six-fold at an input current density of 3C-rate. Such enhanced Li-ion storage performance may be associated with modified electrode structure at the nanoscale, improved charge transfer, and facile stress relaxation from the embedded CuNF network. Consequently, the CuNFs@CoOxcomposite structure demonstrated here can be used as a promising high-performance electrode for Li-ion batteries.
机译:我们准备了由铜纳米纤维网络氧化钴(CuNFs @ CoOx)组成的复合电极结构。铜纳米纤维(CuNFs)在具有网络结构形成的基板上制造,在电活性钴氧化物的放电/充电过程中,铜纳米纤维可能具有改善电子渗透和延迟膜变形的潜力。与裸CoOxthin薄膜(CoOxTF)电极相比,CuNFs @ CoOx电极在3C速率的输入电流密度下,速率性能显着提高了至少六倍。这种增强的锂离子存储性能可能与纳米级修饰的电极结构,改善的电荷转移以及来自嵌入式CuNF网络的容易的应力松弛相关。因此,此处展示的CuNFs @ CoOx复合材料结构可用作锂离子电池的有希望的高性能电极。

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