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Effects of the LiFePO4 content and the preparation method on the properties of (LiFePO4+AC)/Li4Ti5O12 hybrid batterycapacitors

机译:LiFePO4的含量和制备方法对(LiFePO4 + AC)/ Li4Ti5O12混合电池电容器性能的影响

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Two composite cathode materials containing LiFePO4 and activated carbon (AC) were synthesized by an in-situ method and a direct mixing technique, which are abbreviated as LAC and DMLAC, respectively. Hybrid battery-capacitors LAC/Li4Ti5O12 and DMLAC/Li4Ti5O12 were then assembled. The effects of the content of LiFePO4 and the preparation method on the cyclic voltammograms, the rate of charge-discharge and the cycle performance of the hybrid batterycapacitors were investigated. The results showed the overall electrochemical performance of the hybrid battery-capacitors was the best when the content of LiFePO4 in the composite cathode materials was in the range from 11.8 to 28.5 wt. %, while the preparation method had almost no impact on the electrochemical performance of the composite cathodes and hybrid battery-capacitors. Moreover, the hybrid batterycapacitor devices had a good cycle life performance at high rates. After 1000 cycles, the capacity loss of the DMLAC/Li4Ti5O12 hybrid batterycapacitor device at 4 C was no more than 4.8 %. Moreover, the capacity loss would be no more than 9.6 % after 2000 cycles at 8oC.
机译:通过原位合成和直接混合技术合成了两种含LiFePO4和活性炭(AC)的复合正极材料,分别简称为LAC和DMLAC。然后组装混合电池电容器LAC / Li4Ti5O12和DMLAC / Li4Ti5O12。研究了LiFePO4的含量和制备方法对混合伏安电池循环伏安图,充放电速率和循环性能的影响。结果表明,当复合正极材料中LiFePO4的含量为11.8至28.5 wt%时,混合电池电容器的整体电化学性能最佳。 %,而制备方法几乎对复合阴极和混合电池电容器的电化学性能没有影响。而且,混合电池电容器装置在高速​​率下具有良好的循环寿命性能。经过1000次循环后,DMLAC / Li4Ti5O12混合电池电容器在4 C时的容量损失不超过4.8%。而且,在8oC下经过2000次循环后,容量损失将不超过9.6%。

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