School of Energy and Power Engineering, Northeast Electric Power University, Jilin 132012, China.
Int J Mol Sci. 2024 Oct 18;25(20):11217. doi: 10.3390/ijms252011217.
In this study, the molecular structure models of four ionic liquids were created, the reverse nonequilibrium molecular dynamics simulation (RNEMD) approach was used to predict their densities and viscosities, and their thermal conductivity was simulated using the non-equilibrium molecular dynamic simulation method (NEMD). The calculated results of ionic liquid densities were compared with the data in the literature; most of the variances are around 2.5%, and the maximum relative deviation was less than 6.27%; viscosity values were compared with the experimental data, with a maximum relative deviation of -8.96% and a minimum relative deviation of -2.72%. The simulated thermal conductivity has a good linear relationship with respect to temperature and pressure, which is in good agreement. This study provides a reference for molecular dynamics simulation to measure the physical properties of ionic liquids, which is important for the development of ionic liquids.
在这项研究中,创建了四种离子液体的分子结构模型,使用反向非平衡分子动力学模拟(RNEMD)方法来预测它们的密度和粘度,并使用非平衡分子动力学模拟方法(NEMD)来模拟它们的导热系数。将离子液体密度的计算结果与文献中的数据进行了比较;大多数偏差在 2.5%左右,最大相对偏差小于 6.27%;将粘度值与实验数据进行了比较,最大相对偏差为-8.96%,最小相对偏差为-2.72%。模拟的导热系数与温度和压力呈良好的线性关系,吻合较好。这项研究为用分子动力学模拟测量离子液体的物理性质提供了参考,这对离子液体的发展很重要。