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Li-Ion Battery Performance with FSI-Based Ionic Liquid Electrolyte and Fluorinated Solvent-Based Electrolyte

机译:锂离子电池性能与基于FSI的离子液体电解质和氟化溶剂基电解质

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We evaluated the electrochemical behavior of a LiNi_(1/3)Mn_(1/3)Co_(1/3)O_2 (NMC) electrode in a neat ionic liquid, 1-ethyl-3-methylimidazolium bis(fluorosulfonyl)imide (EMImFSI), electrolyte. According to charge/discharge measurements, the discharge capacity of the NMC cathode in EMImFSI at 1 C in a voltage range of 3.0-4.5 (vs. Li/Li~+) shows 165 mAh g~(-1), which is higher than that in a conventional electrolyte, EC+DMC. The rate capability of a cell with EMImFSI exceeds that with EC+DMC, especially at high rates, probably due to a low resistance at the electrode/electrolyte interface. These results suggest that EMImFSI is a suitable electrolyte for Li-ion batteries utilizing a NMC cathode. Also, we applied fluorine-containing solvents (FCSs) to an electrolyte for Li-ion batteries with a cobalt oxide (LiCoO_2) cathode to enhance the upper voltage limit and investigated its electrochemical properties in a proposed FCS-based electrolyte. A test cell containing a FCS-based electrolyte exhibits high and stable discharge capacity for 30 cycles even with a high upper cutoff voltage of 4.5 V when compared with a cell containing a conventional electrolyte.
机译:我们在整齐的离子液体,1-乙基-3-甲基咪唑鎓双(氟磺酰基)酰亚胺中,评估了LINI_(1/3)MN_(1/3)CO_(1/3)O_2(NMC)电极的电化学行为(氟磺酰基)酰亚胺(EMIMFSI) ),电解质。根据充电/放电测量,在3.0-4.5(与Li / Li〜+)的电压范围内的EMIMFSI中NMC阴极在EMIMFSI中的放电容量显示165mAhg〜(-1),其高于在传统电解质,EC + DMC中。具有EMIMFSI的细胞的速率能力超过EC + DMC,特别是高速率,可能是由于电极/电解质界面处的低电阻。这些结果表明EMIMFSI是利用NMC阴极的锂离子电池的合适电解质。此外,我们将含氟溶剂(FCS)施加到具有钴氧化物(LiCoO_2)阴极的锂离子电池的电解质中,以增强上电压限制并在所提出的Fcs基电解质中研究其电化学性质。含有FCS的电解质的测试电池,即使与含有常规电解质的电池相比,也具有4.5V的高上截止电压,其呈高且稳定的放电容量为30次循环。

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