首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Improvement of cycle performance of all-solid-state lithium ion batteries with clustered composite electrodes using PTFE powder
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Improvement of cycle performance of all-solid-state lithium ion batteries with clustered composite electrodes using PTFE powder

机译:用PTFE粉末改进全固态锂离子电池全固态锂离子电池的循环性能

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摘要

Cycle performance is a technical challenge for the all-solid-state lithium ion battery because of contact loss between the active materials and solid electrolytes. Providing an intimate adhesive contact between solid electrolyte and active materials might be the most effective and practical solution. To address this issue, we added PTFE powder to the composite cathode in order to create good conducting paths for Li ions and electrons of the lithium batteries. We show the PTFE added composite cathode has significantly better cycle performance. Electrochemical impedance spectroscopy suggests that the charge transfer resistance increased as the amount of PTFE powder increased. On the other hand, differential capacity vs. voltage profiles showed that polarization of the composite cathode was suppressed as cycle number increased in the PTFE added composites. A preliminary model is suggested to guide future development of the microstructure in all-solid-state batteries.
机译:由于活性材料和固体电解质之间的接触损耗,循环性能是全固态锂离子电池的技术挑战。 在固体电解质和活性材料之间提供贴合的粘合剂接触可能是最有效和实用的解决方案。 为了解决这个问题,我们将PTFE粉末添加到复合阴极上,以便为锂电池的Li离子和电子产生良好的导电路径。 我们展示了PTFE添加的复合阴极具有明显更好的循环性能。 电化学阻抗光谱表明,随着PTFE粉的量增加,电荷转移阻力增加。 另一方面,差异容量与电压分布显示,抑制复合阴极的偏振,因为在PTFE添加的复合材料中增加了循环数。 建议初步模型引导全固态电池中微观结构的未来发展。

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