Del Pópolo Mario G, Lynden-Bell Ruth M, Kohanoff Jorge
Atomistic Simulation Centre, School of Mathematics and Physics, Queen's University Belfast, Belfast BT7 1NN, U.K.
J Phys Chem B. 2005 Mar 31;109(12):5895-902. doi: 10.1021/jp044414g.
Ab initio molecular dynamics simulations have been performed for the first time on the room-temperature organic ionic liquid dimethyl imidazolium chloride [DMIM][Cl] using density functional theory. The aim is to compare the local liquid structure with both that obtained from two different classical force fields and from neutron scattering experiments. The local structure around the cation shows significant differences compared to both the classical calculations and the neutron results. In particular, and unlike in the gas-phase ion pair, chloride ions tend to be located near a ring C-H proton in a position suggesting hydrogen bonding. The results are used to suggest ways in which the classical potentials may be improved.
首次使用密度泛函理论对室温下的有机离子液体氯化二甲基咪唑鎓[DMIM][Cl]进行了从头算分子动力学模拟。目的是将局部液体结构与从两种不同的经典力场以及中子散射实验获得的结构进行比较。与经典计算和中子结果相比,阳离子周围的局部结构显示出显著差异。特别是,与气相离子对不同,氯离子倾向于位于环C-H质子附近,处于表明存在氢键的位置。这些结果被用于提出改进经典势的方法。