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Pure ionic liquid electrolytes compatible with a graphitized carbon negative electrode in rechargeable lithium-ion batteries

机译:与可充电锂离子电池中的石墨化碳负极兼容的纯离子液体电解质

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摘要

Ambient temperature ionic liquids composed of bis(fluorosulfonyl)imide (FSI) as an anion and l-ethyl-3-methylimidazolium (EMI) or N-methyl-N-propylpyrrolidinium (P-13) as a cation have the following desirable physicochemical properties, particularly for a battery electrolyte: a high ionic conductivity, low viscosity, and a low melting point. While an irreversible cationic intercalation into graphene interlayers at ca. 0.5 V versus Li/Li~+ has been a significant and common problem with usual ionic liquids, we found that ionic liquids containing FSI with the Li cation can prevent such an irreversible reaction and provide reversible Li intercalation into graphene interlayers. Our experimental results found the reversible capacity of a graphite negative electrode, in a half-cell with EMI-FSI containing the Li cation as an electrolyte, to be a stable value of approximately 360 mAh g~(-1) during 30 cycles at a charge/discharge rate of 0.2 C, The present paper may be the first report that a "pure" ionic liquid can provide a stable, reversible capacity for a graphitized negative electrode at an ambient temperature without any additives or solvents when an appropriate counter anion, e.g., FSI, is selected.
机译:由双(氟磺酰基)酰亚胺(FSI)作为阴离子和1-乙基-3-甲基咪唑鎓(EMI)或N-甲基-N-丙基吡咯烷鎓(P-13)作为阳离子组成的环境温度离子液体具有以下理想的物理化学性质,特别是对于电池电解质:高离子电导率,低粘度和低熔点。而不可逆的阳离子嵌入到石墨烯中间层在约。 0.5 V vs. Li / Li〜+已成为常见离子液体的一个重大且普遍的问题,我们发现含有FSI和Li阳离子的离子液体可以防止这种不可逆反应,并提供可逆的Li嵌入石墨烯中间层。我们的实验结果发现,在含有Li阳离子作为电解质的EMI-FSI的半电池中,石墨负极的可逆容量在30循环的a-下约为360 mAh g〜(-1)的稳定值。充电/放电速率为0.2C。本论文可能是第一个报道,称“纯”离子液体可在环境温度下为石墨化负极提供稳定,可逆的容量,而当使用适当的抗衡阴离子时,无需任何添加剂或溶剂,例如FSI。

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