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Pyrrolidinium-based ionic liquids as electrolytes for lithium batteries: A Computational Study

机译:基于吡咯烷酮的离子液体作为锂电池的电解质:计算研究

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摘要

Electrochemical windows (ECWs) of the cyclic ammonium based ionic liquids formed by the combination of two common pyrrolidinium cations-N,N-butylmethyl pyrrolidinum(P(yr)14) and N,N-hexylmethyl pyrrolidinium(P(yr)16) and five anions-dicyanamide, trifluoroacetate, fluoromethane sulfonate, bis((trifluoromethylsulfonyl)imide, and bis(fluorosulfonyl)imide were investigated. The ECW of each ionic liquid was obtained from the oxidation and reduction potentials of these ionic liquids with respect to a Li+/Li reference electrode by using thermodynamic cycle method. The work reveals that the ECWs of these ionic liquids are solely decided by the HOMO energy of pairing anions. The ECWs were also computed using HOMO-LUMO method employing Moller-Plesset perturbation theory to the second order and M06L methods with a basis set of 6-31 + G(d, p). The ECW computed using M06L functional with an extended basis set of 6-311++G(d, p) showed better agreement with experimental values suggesting accurate computation of ECW is possible at lower computational cost.
机译:通过两种常见的吡咯烷鎓阳离子-N,正丁基甲基吡咯烷(P(Yr)14)和N,N-己基甲基吡咯烷鎓(P(YR)16)和N - 己基甲基吡咯烷鎓(P(YR)16)和N-己基甲基吡咯烷(P(YR)16)的组合形成的电化学窗口(ECWS)。(P(Yr)16)和研究了三苯胺 - 二氰胺,三氟乙酸酯,氟甲烷磺酸盐,双((三氟甲基磺酰基)酰亚胺和双(氟磺酰基)酰亚胺。每种离子液体的ECW从这些离子液体相对于Li + /的氧化和降低电位获得。利用热力学循环方法使用热力学循环方法。该工作表明,这些离子液体的eCWS仅由配对阴离子的同性能决定。使用Moller-Plesset扰动理论与第二阶的Homo-Lumo方法计算ECWS基础组6-31 + g(d,p)的M06L方法。使用M06L功能的ECW与延长的基础设置为6-311 ++ G(d,P)显示了与建议准确的实验值更好的协议com以较低的计算成本,可以进行ECW。

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