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Capacity fade study of lithium-ion batteries cycled at high discharge rates

机译:高放电速率循环的锂离子电池容量衰减研究

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摘要

Capacity fade of Sony US 18650 Li-ion batteries cycled using different discharge rates was studied at ambient temperature. The capacity losses were estimated after 300 cycles at 2C and 3C discharge rates and were found to be 13.2 and 16.9% of the initial capacity, respectively. At 1C discharge rate the capacity lost was only 9.5%. The cell cycled at high discharge rate (3C) showed the largest internal resistance increase of 27.7% relative to the resistance of the fresh cells. The rate capability losses were proportional with the increase of discharge rates. Half-cell study and material and charge balances were used to quantify the capacity fade due to the losses of primary active material (Li~+), the secondary active material (LiCoO_2/C)) and rate capability losses. It was found that carbon with 10.6% capacity loss after 300 cycles dominates the capacity fade of the whole cell at high discharge rates (3C). A mechanism is proposed which explains the capacity fade at high discharge rates.
机译:在环境温度下研究了使用不同放电速率循环的Sony US 18650锂离子电池的容量衰减。在2C和3C放电速率下经过300次循环后,估计容量损失,分别为初始容量的13.2%和16.9%。在1C放电速率下,容量损失仅为9.5%。相对于新鲜电池的电阻,以高放电速率(3C)循环的电池显示出最大的内部电阻增加27.7%。速率能力损失与放电速率的增加成正比。使用半电池研究以及材料和电荷平衡来量化由于主要活性物质(Li〜+),次要活性物质(LiCoO_2 / C)和速率容量损失引起的容量衰减。发现在300次循环后,碳的容量损失为10.6%,这在高放电速率(3C)下主导了整个电池的容量衰减。提出了一种解释高放电速率下容量衰减的机理。

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