首页> 外国专利> POWDER FOR LITHIUM ION SECONDARY BATTERY NEGATIVE POLE MATERIAL, LITHIUM ION SECONDARY BATTERY NEGATIVE POLE AND CAPACITOR NEGATIVE POLE, AND LITHIUM ION SECONDARY BATTERY AND CAPACITOR

POWDER FOR LITHIUM ION SECONDARY BATTERY NEGATIVE POLE MATERIAL, LITHIUM ION SECONDARY BATTERY NEGATIVE POLE AND CAPACITOR NEGATIVE POLE, AND LITHIUM ION SECONDARY BATTERY AND CAPACITOR

机译:锂离子二次电池负极材料粉末,锂离子二次电池负极材料和电容器锂离子二次电池负极材料和粉末

摘要

In a lithium ion secondary battery using a negative electrode material powder including a lower silicon oxide powder as a negative electrode material, a charge electric potential at 0.45-1.0 V relative to a Li reference upon initial charging results in a lithium ion secondary battery having a large discharge capacity with excellent cycle characteristics, which can be durable in practical use. On this occasion, the charge electric potential being 0.45-1.0 V relative to the Li reference upon initial charging means that an electric potential plateau caused by the generation of Li-silicate is observed, and the Li-silicate is uniformly generated in the negative electrode material. The negative electrode material powder according to the present invention having the charge electric potential of 0.45-1.0 V relative to the Li reference upon initial charging prevents the negative electrode material from being finely torn apart upon charging/discharging which results in cycle characteristic degradation, and excellent cycle characteristics are obtained. It is preferable for the negative electrode material powder according to the present invention to have an electrically conductive carbon film on the surface, and for the ratio of the electrically conductive carbon film to the surface of the powder to be 0.2-10 mass %.
机译:在使用包含低级氧化硅粉末作为负极材料的负极材料粉末的锂离子二次电池中,初次充电时相对于Li基准的0.45-1.0V的充电电位导致锂离子二次电池具有放电容量大,循环特性优异,在实际使用中可以持久耐用。在这种情况下,初始充电时相对于Li基准的充电电位为0.45-1.0V,这意味着观察到由锂硅酸盐的产生引起的电位平稳,并且在负极中均匀地产生锂硅酸盐。材料。根据本发明的负极材料粉末在初次充电时相对于Li基准具有0.45-1.0V的充电电势,从而防止了负极材料在充电/放电时被精细地撕裂,这导致循环特性下降,并且获得了优异的循环特性。本发明的负极材料粉末优选在表面具有导电性碳膜,并且导电性碳膜相对于粉末的表面的比例优选为0.2〜10质量%。

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