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Particle size effects on temperature-dependent performance of LiCoO_2 in lithium batteries

机译:粒度对锂电池中LiCoO_2温度依赖性性能的影响

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The effect of the particle size of LiCoO_2 on the operating temperature-dependent performance of lithium batteries is investigated. The LiCoO_2 particle size is successfully controlled by modifying the powder preparation process and well-controlled nanocrystalline LiCoO_2 powders are obtained. It is found that the discharge capacity of a cell made with the nanocry stalline powder is slightly lower than that of cells made with micron-sized powders. On the other hand, the cycle performance of the cell using nanocrystalline LiCoO_2 powder is consistent over the selected operating range of temperature (-15 to 60 deg C) without deterioration. It is concluded that the smaller size of the particles contributes to the enhancement of the reliability by increasing the specific surface-area for intercalation sites, and by enhancing the resistance to mechanical failure especially at higher temperatures.
机译:研究了LiCoO_2的粒径对锂电池工作温度相关性能的影响。通过改变粉体的制备过程,成功地控制了LiCoO_2的粒径,得到了良好控制的纳米晶LiCoO_2粉末。已经发现,用纳米晶状的丁烷粉末制成的电池的放电容量比用微米级粉末制成的电池的放电容量稍低。另一方面,使用纳米晶状的LiCoO_2粉末的电池的循环性能在选定的温度操作范围(-15至60摄氏度)下保持一致,而不会劣化。结论是,较小的颗粒尺寸通过增加嵌入位置的比表面积,以及通过增强尤其在较高温度下的抗机械破坏性而有助于提高可靠性。

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