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Electrode manufacturing for lithium-ion batteries-Analysis of current and next generation processing

机译:锂离子电池的电极制造-当前和下一代工艺分析

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摘要

As modern energy storage needs become more demanding, the manufacturing of lithium-ion batteries (LIBs) represents a sizable area of growth of the technology. Specifically, wet processing of electrodes has matured such that it is a commonly employed industrial technique. Despite its widespread acceptance, wet processing of electrodes faces a number of problems, including expensive and dangerous solvent recovery, cut-off waste, coating inconsistencies, and microstructural defects due to the solvent drying process. This review considers each of these issues and discusses which electrode slurry properties should be considered when optimizing wet slurry fabrication. Simultaneously, methods to replace traditional wet processing of electrodes are being extensively researched. Some of these novel electrode manufacturing techniques prioritize solvent minimization, while others emphasize boosting energy and power density by thickening the electrode and, subsequently, creating an organized pore structure to permit faster ion diffusion. This review contemplates the advantages and disadvantages of each of these approaches and provides a comprehensive outlook on the future of electrode manufacturing.
机译:随着现代储能需求的日益增长,锂离子电池(LIB)的制造代表了该技术的巨大增长领域。具体地,电极的湿法处理已经成熟,使得其成为常用的工业技术。尽管电极的湿法加工得到了广泛的接受,但仍面临许多问题,包括昂贵且危险的溶剂回收,切割废料,涂层不一致性以及由于溶剂干燥过程而引起的微观结构缺陷。这篇综述考虑了这些问题中的每一个,并讨论了在优化湿浆料制造时应考虑哪些电极浆料性能。同时,正在广泛研究代替电极的传统湿法处理的方法。这些新颖的电极制造技术中的一些优先考虑溶剂的最小化,而另一些则强调通过使电极变厚来提高能量和功率密度,并随后创建有组织的孔结构以允许更快的离子扩散。这篇综述考虑了每种方法的优缺点,并对电极制造的未来提供了全面的展望。

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