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首页> 外文期刊>Nano Energy >A general strategy to construct yolk-shelled metal oxides inside carbon nanocages for high-stable lithium-ion battery anodes
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A general strategy to construct yolk-shelled metal oxides inside carbon nanocages for high-stable lithium-ion battery anodes

机译:一种在高稳态锂离子电池阳极内构建碳纳米载体内部壳壳金属氧化物的一般策略

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摘要

Metal oxides (MOs) are attractive anode materials of Li-ion batteries for the large theoretical capacity, low cost and high density, but suffer from the poor cycling stability owing to the low conductivity, large volume variation, active component loss and instable solid electrolyte interface (SEI) during cycling. Herein, we develop a simple and general strategy to construct the yolk-shelled metal oxides inside 3D hierarchical carbon nanocages (hCNC). The obtained yolk-shelled MO@hCNC provides sufficient interior void to buffers the large volume variation, forms the stable SEI film, and greatly reduces the loss of active components during lithiation/delithiation, meanwhile ensures the fast electron transfer and ions/electrolyte transportation. Both SnO2@hCNC and Fe3O4@hCNC exhibit superior cycling stability and reversible capacity to the most corresponding SnO2- and Fe3O4-based anode materials reported to date. The simple and general approach to the yolk-shelled MO@hCNC is significant for exploring the high-performance energy-storage materials for Li-ion batteries or even beyond.
机译:金属氧化物(MOS)是锂离子电池的吸引力阳极材料,用于大的理论能力,低成本和高密度,但由于低导电性,大体积变化,活性组分损失和不固体电解质而遭受较差的循环稳定性循环期间的接口(SEI)。在此,我们开发了一种简单且一般的策略来构建3D层次碳纳米载体(HCNC)内的蛋黄壳金属氧化物。所获得的蛋黄 - 壳的MO @ HCNC提供足够的内部空隙以缓冲大体积变化,形成稳定的SEI膜,并且大大减少了锂化/脱节期间活性成分的损失,同时确保快速电子转移和离子/电解质运输。 SNO2 @ HCNC和FE3O4 @ HCNC迄今为止展示了最佳的SNO2和FE3O4阳极材料的循环稳定性和可逆容量。卵黄壳MO @ HCNC的简单和一般方法对于探索锂离子电池的高性能储能材料或甚至超出,这很重要。

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