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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Sandwiched porous C/ ZnO/ porous C nanosheet battery anodes with a stable solid- electrolyte interphase for fast and long cycling
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Sandwiched porous C/ ZnO/ porous C nanosheet battery anodes with a stable solid- electrolyte interphase for fast and long cycling

机译:夹在多孔C / ZnO /多孔C纳米圆片电池阳极,具有稳定的固体电解质相互作用,用于快速和长循环

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Producing carbon/transition metal oxide composites is a promising strategy for improving the stability of high energy alkali-ion batteries. However, fracture of the thin carbon layer by enormous volume change of the oxide and sluggish ion transport in the composite lead to premature cell failure. In this study, we show that anodes consisting of an active ZnO nanosheet sandwiched between two layers of porous thick carbon coating can cycle over 1650 times without obvious capacity decay. The outer thick carbon coating with mechanical robustness suppresses the expansion of the inner oxides without cracks, resulting in a stable SEI layer. Its porous structure and conductive nature also facilitate Li+/electron transportation into the inner oxides. The battery containing composite nanosheets shows a fast and high capacity of 330 mA h g(-1) at 5000 mA g(-1). We notice that a critical thickness ratio of ZnO to the carbon layer may exist, and the carbon layer is prone to fracture in the case of large thickness ratio. The results have important applications in designing carbon/metal oxide composites for high performance anodes of Li-ion batteries.
机译:生产碳/过渡金属氧化物复合材料是提高高能碱离子电池稳定性的有希望的策略。然而,薄碳层的骨折通过氧化物的巨大体积变化和复合材料中的缓慢离子转运导致过早的细胞衰竭。在这项研究中,我们表明,由夹在两层多孔厚碳涂层之间的活性ZnO纳米片组成的阳极可以循环超过1650次,而不会明显衰减。具有机械稳健性的外厚碳涂层抑制了没有裂缝的内氧化物的膨胀,导致稳定的SEI层。其多孔结构和导电性也有助于Li + /电子输送到内氧化物中。含有复合纳米片的电池显示出5000mA G(-1)的快速和高容量为330mA H(-1)。我们注意到,可以存在ZnO至碳层的临界厚度比,并且在厚度比的情况下,碳层容易裂缝。结果在为锂离子电池的高性能阳极设计碳/金属氧化物复合材料时具有重要的应用。

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