Kim Daekeon, Jeong Daun, Jung YounJoon
Department of Chemistry, Seoul National University, 151-747, Seoul, Korea.
Phys Chem Chem Phys. 2014 Sep 28;16(36):19712-9. doi: 10.1039/c4cp01893a.
We investigate the dynamic propensity in a coarse-grained model of a room-temperature ionic liquid via molecular dynamics simulations. Dynamic propensity is defined as the average of squared displacements for each ion during a given time interval over the isoconfigurational ensemble. As the temperature is lowered, distributions of the dynamic propensity develop fat tails at high values, indicating the presence of dynamic heterogeneity in the system. The increase in the heterogeneity for the cation is more evident than that for the anion, and a high propensity exhibits a large variance in the isoconfigurational ensemble, implying that dynamic propensity is related to ions' motions at a large length scale, rather than a direct measure of the individual ion dynamics. In addition, large non-Gaussian parameters observed for small dynamic propensities reveal intermittent dynamical behaviors of ions. In order to reveal the origin of the dynamic heterogeneity in a room-temperature ionic liquid, a possible correlation between the mobility and dynamic propensity is further probed. It is observed that spatial distributions of the dynamic propensity coincide with those of the mobility. The results suggest a possible connection between the structure and heterogeneous dynamics on large length scales.
我们通过分子动力学模拟,在室温离子液体的粗粒度模型中研究动态倾向。动态倾向定义为在给定时间间隔内,等构型系综中每个离子的平方位移的平均值。随着温度降低,动态倾向的分布在高值处出现肥尾,表明系统中存在动态非均匀性。阳离子的非均匀性增加比阴离子更明显,并且高倾向在等构型系综中表现出较大的方差,这意味着动态倾向与离子在大长度尺度上的运动有关,而不是对单个离子动力学的直接度量。此外,对于小动态倾向观察到的大非高斯参数揭示了离子的间歇性动力学行为。为了揭示室温离子液体中动态非均匀性的起源,进一步探究了迁移率与动态倾向之间可能的相关性。观察到动态倾向的空间分布与迁移率的空间分布一致。结果表明在大长度尺度上结构与非均匀动力学之间可能存在联系。