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Porous CuCo2O4 nanocubes wrapped by reduced grapheme oxide as high-performance lithium-ion battery anodes

机译:多孔CuCo2O4 nanocubes包裹的减少字素氧化物作为高性能锂离子电池的阳极

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摘要

A composite of porous CuCo2O4 nanocubes well wrapped by reduced graphene oxide (rGO) sheets has been synthesized by a facile microwave-assisted solvothermal reaction and applied as anode in lithium ion batteries (LIBs). The porous structure of the CuCo2O4 nanocubes not only provides a high surface area for contact with the electrolyte, but also assists by accommodating volume change upon charging-discharging. Impedance measurements and transmission electron microscopy show that incorporation of rGO further decreases the charge transfer resistance and improves the structural stability of the composite. As an anode material for a LIB, the composite exhibits a high stable capacity of ~570 mA h g~(-1) at a current density of 1000 mA g~(-1) after 350 cycles. With a high specific surface area and a low charge transfer resistance, the composite anode shows impressive performance especially at high current density. The LIB shows a high capacity of ~450 mA h g~(-1) even at a high current density of 5000 mA g~(-1), demonstrating the composite's potential for applications in LIBs with long cycling life and high power density.
机译:复合多孔CuCo2O4 nanocubes包装,减少氧化石墨烯(rGO)表合成了肤浅吗微波solvothermal反应和应用在锂离子电池阳极(LIBs)。的多孔结构CuCo2O4 nanocubes不是只提供高表面积接触与电解液,还助攻容纳体积变化时充电放电。透射电子显微镜显示整合rGO进一步降低费用转移阻力和提高结构稳定的复合。自由,复合展品高稳定马的能力~ 570 h g ~(1)电流密度马1000 g ~(1) 350年以后周期。比表面积和低电荷转移抵抗,复合阳极展示了令人印象深刻的性能特别是在高电流密度。自由展示了~ 450毫安的大容量h g ~ (1)即使在高电流密度的5000毫安g ~ (1),示威的复合的可能应用在填词和循环寿命长高功率密度。

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