电解质
锂(药物)
离子
化学物理
分子动力学
电池(电)
锂离子电池
离子运输机
溶剂化
化学
纳米技术
材料科学
计算化学
物理
物理化学
热力学
有机化学
电极
医学
功率(物理)
内分泌学
作者
Rasmus Andersson,Oleg Borodin,Patrik Johansson
标识
DOI:10.1149/1945-7111/ac96af
摘要
The electrolytes of the today omnipresent lithium-ion batteries (LIBs) have for more than 25 years been based upon 1 M LiPF 6 in a 50:50 EC:DMC mixture—commonly known as LP30. The success of the basic design of the LP30 electrolyte, with many variations and additions made over the years, is unchallenged. Yet, some molecular level fundamentals of LP30 are surprisingly elusive: the structure of the first solvation shell of the Li + cation is still a topic of current debate; the details of the dynamics are not fully understood; the interpretation of structural and dynamic properties is highly dependent on the analysis methods used; the contributions by different species to the ion transport and the energetics involved are not established. We here apply dynamic structure discovery analysis as implemented in CHAMPION to molecular dynamics simulation trajectories to bring new light on the structure and dynamics within LP30 and especially the (Li + ) ion transport to rationalize further development of LIB electrolytes.
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