电解质
溶剂化
锂(药物)
二聚体
化学
硝酸锂
无机化学
离子
化学物理
分子动力学
离子液体
盐(化学)
计算化学
物理化学
离子键合
有机化学
溶剂
电极
催化作用
内分泌学
医学
作者
Ervin Rems,Tim Šlosar,Sara Drvarič Talian,Matej Huš,Robert Dominko,Alessandra Serva
标识
DOI:10.26434/chemrxiv-2025-mcvwf
摘要
Liquid battery electrolytes based on mixtures of salts with weakly and strongly associating anions have emerged as a promising route toward high-performance, sustainable battery technologies. Their success is primarily attributed to the unique influence of salt composition on the solvation structure. Here, we employ classical molecular dynamics simulations, corroborated by experimental data, to study mixed lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) / lithium nitrate (LiNO3) in diglyme electrolytes, a formulation of particular interest for lithium–sulfur and lithium-oxygen batteries. We investigate how the ratio of weakly associating anions (TFSI–) to strongly associating anions (NO3–) affects ion transport within the electrolyte. Our findings reveal that the anion ratio significantly impacts both the solvation structure and the solvation dynamics, which together contribute to the distinct transport behavior observed in these systems. These findings underscore the tunability of battery electrolyte transport properties through careful mixing of anions.
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