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Failure Modes of Silicon Powder Negative Electrode in Lithium Secondary Batteries

机译:锂二次电池中硅粉负极的失效模式

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Si composite negative electrodes for lithium secondary batteries degrade in the dealloying period with an abrupt increase in internal resistance that is caused by a breakdown of conductive network made between Si and carbon particles. This results from a volume contraction of Si particles after expansion in the previous alloying process. Due to the large internal resistance, the dealloying reaction is not completed while Si remains as a lithiated state. The anodic performance is greatly improved either by applying a pressure on the cells or loading a larger amount of conductive carbon in the composite electrodes
机译:用于锂二次电池的Si复合负极在脱合金期间降解,由于由Si和碳颗粒之间形成的导电网络的破坏引起的内部电阻的突然增加。这是由于在先前的合金化过程中膨胀后Si颗粒的体积收缩所致。由于较大的内部电阻,所以当Si保持为锂化状态时,脱合金反应未完成。通过在电池上施加压力或在复合电极中加载大量导电碳,可以大大提高阳极性能

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