星团(航天器)
微秒
化学物理
离子液体
脂质双层
分子动力学
双层
化学
离子键合
离子
阳离子聚合
材料科学
计算化学
膜
高分子化学
物理
有机化学
生物化学
催化作用
计算机科学
天文
程序设计语言
作者
Liu Ju,Yanlei Wang,Chenlu Wang,Jinai Gao,Wei Cui,Baofeng Zhao,Lihua Zhang,Hongyan He,Suojiang Zhang
标识
DOI:10.1021/acs.jpclett.1c02566
摘要
The GPU-accelerated molecular dynamics simulations are performed to explore the dynamical inserting process of ionic liquids (ILs) into the lipid bilayer. We found that the free ions and clusters coexist in the system, but only the cation can insert into the lipid bilayer. In specific, after a microsecond-scale simulation (up to 1.16 μs), the inserting rate increases first and then decreases nonmonotonic as side chain of cation (nchain) elongates, peaking at nchain = 10. However, the inserting free energy decreases with nchain, indicating the inserting process is easier for the larger nchain. Such contrary originates from the formation of cluster, where the cluster dissociating energy shows that only cluster for nchain ≤ 10 can dissociate spontaneously. Hence, the inserting rate is determined by the balance between nchain and cluster stability. These quantitative competition mechanisms shed light to the rational design of the biocompatible ILs toward their applications in the biochemical-related fields.
科研通智能强力驱动
Strongly Powered by AbleSci AI