离子液体
分子动力学
化学物理
化学
离子
电解质
分子间力
离子键合
计算化学
分子
电极
物理化学
有机化学
催化作用
作者
Seiji Tsuzuki,Wataru Shinoda
标识
DOI:10.1002/tcr.202200272
摘要
Abstract The elucidation of the factors determining liquid structures and transport properties of ionic liquids is important for the design and development of ionic liquid electrolytes. This personal account introduces the importance of computational methods for studying ionic liquids. Molecular dynamics simulations provide detailed information on liquid structures of ionic liquid such as the structures of solvated cation complexes in equimolar mixtures of glymes and Li[TFSA] and the effects of the charges of electrode on liquid structure near the electrode. Ab initio calculations reveal that the magnitude of the attraction between ions and conformational flexibility ions play important roles in determining transport properties of ionic liquids. First principle molecular dynamics simulations elucidate why solvated cation complex is stable in the equimolar mixtures, although the Li + ‐[TFSA] − interaction is greater than Li + ‐glyme interaction.
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