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粒径分布对微米级硅基负极材料电化学性能的影响。

Effect of particle size distribution on the electrochemical performance of micro-sized silicon-based negative materials.

作者信息

Wu Shuaijin, Yu Bing, Wu Zhaohui, Fang Sheng, Shi Bimeng, Yang Juanyu

机构信息

General Research Institute for Nonferrous Metals Beijing 100088 China

China Automotive Battery Research Institute Co., Ltd Beijing 100088 China.

出版信息

RSC Adv. 2018 Feb 23;8(16):8544-8551. doi: 10.1039/c8ra00539g.

Abstract

Si has been extensively examined as a potential alternative to carbonaceous negative materials, because it shows exceptional gravimetric capacity and abundance. In recent years, the strategy of using nano-structured silicon materials as building blocks to build micro-sized silicon-based materials has been widely studied. In this work, a commercialized and benchmark micro-sized silicon-based material (denoted as SiO /C) is used as research target and three groups of materials with different particle size distributions (PSDs) were obtained by simply mechanical sieving. The effects of PSD on the electrochemical performance and electrode structure of micro-sized silicon-based negative electrodes are discussed. The optimized selection of micro-sized active material PSD presents a comprehensive way for developing and characterizing Si-based negative electrodes for practicable high-energy LIBs. In this case, the optimized SiO /C composite electrode with a particle size of 22.7 μm and narrow PSD shows enhanced cycling stability with a high capacity retention of 84.31% over 100 cycles.

摘要

硅作为碳质负极材料的潜在替代品已被广泛研究,因为它具有出色的重量比容量和丰富性。近年来,使用纳米结构硅材料作为构建块来构建微米级硅基材料的策略得到了广泛研究。在这项工作中,一种商业化的基准微米级硅基材料(表示为SiO /C)被用作研究目标,通过简单的机械筛分获得了三组具有不同粒度分布(PSD)的材料。讨论了PSD对微米级硅基负极的电化学性能和电极结构的影响。微米级活性材料PSD的优化选择为开发和表征用于实用高能锂离子电池的硅基负极提供了一种全面的方法。在这种情况下,粒径为22.7μm且PSD窄的优化SiO /C复合电极显示出增强的循环稳定性,在100次循环中具有84.31%的高容量保持率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df0/9078586/55ce66a40b36/c8ra00539g-f1.jpg

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