首页> 外文期刊>Electrochimica Acta >Molten salt of lithium bis(fluorosulfonyl)imide (LiFSI)-potassium bis(fluorosulfonyl)imide (KFSI) as electrolyte for the natural graphite/LiFePO4 lithium-ion cell
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Molten salt of lithium bis(fluorosulfonyl)imide (LiFSI)-potassium bis(fluorosulfonyl)imide (KFSI) as electrolyte for the natural graphite/LiFePO4 lithium-ion cell

机译:双(氟磺酰基)酰亚胺锂(LiFSI)-双(氟磺酰基)酰亚胺钾(KFSI)的熔融盐作为天然石墨/ LiFePO4锂离子电池的电解质

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The binary eutectic mixture of lithium bis(fluorosulfonyl)imide (LiFSI) and potassium bis(fluorosulfonyl)imide (KFSI) with a molar ratio of x(LiFSI): x(KFSI) = 0.41: 0.59 has been investigated as molten salt electrolyte for natural graphite/LiFePO4 lithium-ion cells at 80 degrees C. The electrochemical performances of the Liatural graphite, Li/LiFePO4, and natural graphite/LiFePO4 cells using this molten salt electrolyte have been evaluated, in terms of cycling performances and electrochemical impedance spectra (EIS) at 80 degrees C. Both the Liatural graphite and Li/LiFePO4 cells show good cycling performances. The initial specific capacities after conditioning for the natural graphite and LiFePO4 electrodes are 353 and 150 mAh g(-1), respectively, and the corresponding capacity retention rates are 98% and 97%, respectively, after 100 cycles at 80 degrees C, except for a large irreversible capacity (162 mAh g(-1)) observed for the natural graphite at the first cycle for forming solid electrolyte interface (SEI) film. The natural graphite/LiFePO4 lithium-ion cell using this molten salt electrolyte shows a low capacity in the range of 71-86 mAh g(-1), due to the large irreversible capacity (71 mAh g(-1)) at the first cycle, but it shows a good cycleability after the first cycle, and provides a specific capacity of 71 mAh g(-1) after 100 cycles at 80 degrees C. The variations of cycling performances of these cells can be well correlated with their impedance evolution with cycling. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究了双(氟磺酰基)酰亚胺锂(LiFSI)和双(氟磺酰基)酰亚胺钾(KFSI)的摩尔比为x(LiFSI):x(KFSI)= 0.41:0.59的二元共晶混合物作为熔融盐电解质80摄氏度下的天然石墨/ LiFePO4锂离子电池。已评估了使用这种熔融盐电解质的Li /天然石墨,Li / LiFePO4和天然石墨/ LiFePO4电池的电化学性能,包括循环性能和电化学阻抗在80摄氏度下的光谱(EIS)。Li/天然石墨和Li / LiFePO4电池均显示出良好的循环性能。天然石墨电极和LiFePO4电极经过调理后的初始比容量分别为353和150 mAh g(-1),并且在80摄氏度下经过100次循环后,相应的容量保持率分别为98%和97%。较大的不可逆容量(162 mAh g(-1)),用于在形成固体电解质界面(SEI)膜的第一个循环中观察到的天然石墨。使用这种熔融盐电解质的天然石墨/ LiFePO4锂离子电池由于在开始时具有不可逆的大容量(71 mAh g(-1)),因此在71-86 mAh g(-1)的范围内显示出低容量。循环,但在第一个循环后显示出良好的循环性,并在80摄氏度下经过100个循环后提供71 mAh g(-1)的比容量。这些电池的循环性能变化可以与它们的阻抗演化很好地相关与骑自行车。 (C)2014 Elsevier Ltd.保留所有权利。

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