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LiFePO_4/AC Composite Cathodes - Long term Cycle life study and Capacity Sharing Analysis

机译:Lifepo_4 / AC复合阴极 - 长期循环寿命研究和容量共享分析

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Energy storage devices combining the advantages of battery and supercapacitor are of prime interest. Recently, composite cathodes combining battery materials with capacitor material have shown promise in enhancing capacity and cycle life. Lithium ion capacitor (LIC), with unique charge storage mechanism (battery anode with capacitor cathode), has the potential to synergistically incorporate composite cathode to enhance capacity and cycle life. We report here an internal hybrid LIC consisting of lithium iron phosphate/activated carbon composite cathode in combination with hard carbon anode, by integrating cycle life and capacity enhancing strategies of dry method of electrode fabrication, anode prelithiation and a designed anode to cathode capacity ratio, while elaborating on the faradaic/non-faradaic capacity sharing. An excellent cell capacity retention of 91% (5000 cycles) and 94% (20000 cycles) were demonstrated at low and high rates, while retaining >78% and 76% of the LFP capacity in the composite cathode, respectively.
机译:结合电池和超级电容器的优点的能量存储装置具有主要兴趣。最近,复合阴极将带电容器材料的电池材料组合在增强容量和循环寿命方面表现出承诺。锂离子电容器(LIC),具有独特的电荷存储机构(带电容器阴极的电池阳极),有可能协同掺入复合阴极以增强容量和循环寿命。我们在此报告一种内部混合LIC由磷酸铁锂/活性炭复合阴极组合,与硬碳阳极组合,通过整合循环寿命和电极制造的干燥方法,阳极前轮廓和设计的阳极与阴极容量比的策略,虽然详细说明了佛拉夫/非法拉迪亚能力共享。优异的电池容量保持91%(5000次循环)和94%(20000次循环)以低率和高速率证明,同时分别保持> 78%和76%的复合阴极中的LFP容量。

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