锂离子电池厚电极的合理设计

Yoon Bo Sim, Bo Keun Park, Ki Jae Kim
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引用次数: 0

摘要

为了在有限的空间内实现锂离子电池(LIBs)的高能量密度,厚电极通过在单元电池级别上最小化无源成分并在相同体积内允许更高的活性材料负载发挥重要作用。目前,活性材料的容量已接近理论容量;因此,厚电极为高能量密度电池的发展提供了最清晰的解决方案。然而,由于其厚度的增加,电极内部的电化学和机械不稳定性需要进一步的研究。本文在深入考虑厚电极所面临的挑战的基础上,总结了用于快速离子传输的低扭转、均匀孔隙结构电极的各种方法和最新研究。展望了这些方法应用于工业的未来发展和研究方向。这一研究成果将成为未来制造高性能坚固厚电极和实现超高容量/密度电池的重要里程碑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reasonable design of thick electrodes in lithium-ion batteries
To achieve a high energy density for Li-ion batteries (LIBs) in a limited space, thick electrodes play an important role by minimizing passive component at the unit cell level and allowing higher active material loading within the same volume. Currently, the capacity of active materials is close to the theoretical capacity; therefore, thick electrodes provide the clearest solution for the development of high-energy-density batteries. However, further research is needed to resolve the electrochemical and mechanical instabilities inside the electrode owing to its increased thickness. This review summarizes the various methods and recent research aimed at fabricating electrodes with low-torsion and uniform pore structure for fast ion transport, based on an in-depth consideration of the challenges encountered in thick electrodes. In addition, future developments and research directions necessary to apply these methods to the industry are presented. This review will be a valuable milestone for manufacturing robust thick electrodes with high performance and for realizing ultrahigh-capacity/density batteries in the future.
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