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Cation effect on small phosphonium based ionic liquid electrolytes with high concentrations of lithium salt

机译:高浓度锂盐的小鏻离子液体电解质的阳离子效应

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Ionic liquid electrolytes with high alkali salt concentrations have displayed some excellent electrochemical properties, thus opening up the field for further improvements to liquid electrolytes for lithium or sodium batteries. Fundamental computational investigations into these high concentration systems are required in order to gain a better understanding of these systems, yet they remain lacking. Small phosphonium-based ionic liquids with high concentrations of alkali metal ions have recently shown many promising results in experimental studies, thereby prompting us to conduct further theoretical exploration of these materials. Here, we conducted a molecular dynamics simulation on four small phosphonium-based ionic liquids with 50 mol. % LiFSI salt, focusing on the effect of cation structure on local structuring and ion diffusional and rotational dynamics-which are closely related to the electrochemical properties of these materials. Published by AIP Publishing.
机译:具有高碱盐浓度的离子液体电解质表现出一些优异的电化学性质,从而开进一步改善锂或钠电池的液体电解质。 需要对这些高浓度系统的基本计算调查是为了更好地了解这些系统,但它们仍然缺乏。 最近具有高浓度碱金属离子的小鏻离子液体最近显示了许多有前途的实验研究结果,从而促使我们对这些材料进行进一步的理论探索。 在这里,我们在具有50摩尔的四个基于鏻的离子液体上进行了分子动力学模拟。 %Lifsi盐,重点关注阳离子结构对局部结构和离子扩散和旋转动力学的影响 - 与这些材料的电化学性能密切相关。 通过AIP发布发布。

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