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High-temperature carbon-coated aluminum current collector for enhanced power performance of LiFePO4 electrode of Li-ion batteries

机译:高温碳涂层铝集电器,可增强锂离子电池LiFePO4电极的功率性能

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摘要

The charge/discharge capacity and cycle stability at high C-rate of LiFePo4 (LFPO) electrodes using three types of Al current collectors, including smooth un-etched Al foil, anodization-etched Al foil, and the etched Al foil covered with a conformal C coating grown at 600 degrees C in CH4, were investigated. The results unequivocally demonstrate the strong effects exerted by the surface structure and composition of the Al current collectors on the power performance. In particular, the use of the C-coated current collector not only remarkably increases the power-delivering capability, by 3-7-fold based on different comparison criteria, of the LFPO electrode, but also greatly enhances its cycle stability under high C-rate (5C). The rate enhancement exceeds that of a low-temperature organic-bound C-coating reported in the literature. The enhancements are consistent with observed reduction in overall charge-transfer resistance, which can be attributed to the removal of the native insulating oxide surface layer of the current collector and to the improved adhesion at the active layer/current collector interface. This current collector is also applicable to other cathode and anode (e.g., Li4Ti5O12) materials of Li-ion batteries for the same beneficial effects.
机译:LiFePo4(LFPO)电极在高C速率下使用三种类型的Al集电器的充放电容量和循环稳定性,包括光滑的未蚀刻Al箔,阳极氧化蚀刻的Al箔和覆盖有共形的Al蚀刻的Al箔研究了在CH4中在600摄氏度下生长的C涂层。结果清楚地证明了铝集电器的表面结构和成分对功率性能产生了强大的影响。特别是,使用C涂层的集电器不仅可以显着提高LFPO电极的供电能力(基于不同的比较标准,提高了3-7倍),而且还可以大大提高其在高C-功率下的循环稳定性。率(5C)。速率提高超过文献中报道的低温有机结合的C涂层的速率。增强与观察到的总体电荷转移电阻的降低相一致,这可归因于集电器的天然绝缘氧化物表面层的去除以及活性层/集电器界面处的改进的粘附力。该集电器还适用于锂离子电池的其他正极和负极材料(例如Li4Ti5O12),以达到相同的有益效果。

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