E. Hála Laboratory of Thermodynamics, Institute of Chemical Process Fundamentals of the ASCR, v. v. i., 165 02 Prague 6-Suchdol, Czech Republic and Department of Physics, Faculty of Science, J. E. Purkinje University, 400 96 Ústí n. Lab., Czech Republic.
J Chem Phys. 2013 Dec 7;139(21):214701. doi: 10.1063/1.4833335.
We present molecular-level insight into the liquid/gas interface of two chiral room-temperature ionic liquids (RTILs) derived from 1-n-butyl-3-methylimidazolium bromide ([bmim][Br]); namely, (R)-1-butyl-3-(3-hydroxy-2-methylpropyl)imidazolium bromide (hydroxypropyl) and 1-butyl-3-[(1R)-nopyl]imidazolium bromide (nopyl). We use our currently developed force field which was validated against the experimental bulk density, heat of vaporization, and surface tension of [bmim][Br]. The force field for the RTILs adopts the Chemistry at Harvard Molecular Mechanics (CHARMM) parameters for the intramolecular and repulsion-dispersion interactions along with the reduced partial atomic charges based on ab initio calculations. The net charges of the ions are around ±0.8e, which mimic the anion to cation charge transfer and many-body effects. Molecular dynamics simulations in the slab geometry combined with the intrinsic interface analysis are employed to provide a detailed description of the RTIL/gas interface in terms of the structural and dynamic properties of the interfacial, sub-interfacial, and central layers at a temperature of 300 K. The focus is on the comparison of the liquid/gas interface for the chiral RTILs with the interface for parent [bmim][Br]. The structure of the interface is elucidated by evaluating the surface roughness, intrinsic atomic density profiles, and orientation ordering of the cations. The dynamics of the ions at the interfacial region is characterized by computing the survival probability, and normal and lateral self-diffusion coefficients in the layers.
我们提出了两种手性室温离子液体(RTILs)在气/液界面的分子水平的见解,这两种 RTILs 均由 1-丁基-3-甲基咪唑溴化物([bmim][Br])衍生而来;即(R)-1-丁基-3-(3-羟基-2-甲基丙基)咪唑溴化物(羟基丙基)和 1-丁基-3-[(1R)-n-丙基]咪唑溴化物(n-丙基)。我们使用当前开发的力场进行验证,该力场通过实验验证了[bmim][Br]的体密度、汽化热和表面张力。RTIL 的力场采用了哈佛大学分子力学(CHARMM)参数,用于分子内和排斥-色散相互作用,以及基于从头算计算的减少部分原子电荷。离子的净电荷约为±0.8e,模拟了阴离子到阳离子的电荷转移和多体效应。在 300 K 温度下,采用平板几何形状的分子动力学模拟与固有界面分析相结合,提供了关于界面、亚界面和中心层的结构和动态特性的 RTIL/气体界面的详细描述。重点是比较手性 RTIL 的液体/气体界面与母体[bmim][Br]的界面。通过评估表面粗糙度、内在原子密度分布和阳离子的取向有序性,阐明了界面的结构。通过计算层中的存活概率、正常和横向自扩散系数,来描述界面区域中离子的动力学。