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首页> 外文期刊>Electrochimica Acta >Improved electrochemical performance of the Silicon/Graphite-Tin composite anode material by modifying the surface morphology of the Cu current collector
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Improved electrochemical performance of the Silicon/Graphite-Tin composite anode material by modifying the surface morphology of the Cu current collector

机译:通过改变铜集流体的表面形态来改善硅/石墨-锡复合负极材料的电化学性能

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摘要

Electrochemical performance of the as-prepared silicon based composite electrode for lithium ion battery can be enhanced by modifying the surface morphology of the Cu foil used as the anode current collector. Increasing the roughness of the Cu foil, contributes to the strong interface adhesion between the anode current collector and the silicon based active composite material slurry layer. The electrode with surface morphology modified Cu current collector delivers higher specific capacity and exhibits better rate capability than that with unmodified Cu current collector. It is also found that the cycle-life of the silicon based composite electrode has been significantly improved by using a surface morphology modified anode current collector. The enhanced cyclability is attributed to the good electrical contact integrality between the active materials and the anode current collector. The improved electrochemical performance indicates that optimizing the anode current collector system can be a valuable alternative for improving electrochemical properties of lithium ion rechargeable batteries.
机译:通过改变用作阳极集电器的Cu箔的表面形态,可以增强锂离子电池用硅基复合电极的电化学性能。 Cu箔的粗糙度的增加有助于阳极集流体与硅基活性复合材料浆料层之间的牢固的界面粘合。具有表面形态修饰的Cu集电器的电极与未修饰的Cu集电器相比,具有更高的比容量并表现出更好的倍率能力。还发现通过使用表面形态改性的阳极集电器,硅基复合电极的循环寿命已得到显着改善。增强的可循环性归因于活性材料与阳极集电器之间的良好电接触完整性。改善的电化学性能表明,优化阳极集电器系统可以成为改善锂离子可充电电池电化学性能的有价值的替代方法。

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