Doherty Brian, Zhong Xiang, Gathiaka Symon, Li Bin, Acevedo Orlando
Department of Chemistry, University of Miami , Coral Gables, Florida 33146, United States.
J Chem Theory Comput. 2017 Dec 12;13(12):6131-6145. doi: 10.1021/acs.jctc.7b00520. Epub 2017 Nov 20.
Our OPLS-2009IL force field parameters (J. Chem. Theory Comput. 2009, 5, 1038-1050) were originally developed and tested on 68 unique ionic liquids featuring the 1-alkyl-3-methylimidazolium [RMIM], N-alkylpyridinium [RPyr], and choline cations. Experimental validation was limited to densities and a few, largely conflicting, heat of vaporization (ΔH) values reported in the literature at the time. Owing to the use of Monte Carlo as our sampling technique, it was also not possible to investigate the reproduction of dynamics. The [RMIM] OPLS-2009IL parameters have been revisited in this work and adapted for use in molecular dynamics (MD) simulations. In addition, new OPLS-AA parameters have been developed for multiple anions, i.e., AlCl, BF, Br, Cl, NO, PF, acetate, benzoate bis(pentafluoroethylsulfonyl)amide, bis(trifluoroethylsulfonyl)amide, dicyanamide, formate, methylsulfate, perchlorate, propanoate, thiocyanate, tricyanomethanide, and trifluoromethanesulfonate. The computed solvent densities, heats of vaporization, viscosities, diffusion coefficients, heat capacities, surface tensions, and other relevant solvent data compared favorably with experiment. A charge scaling of ±0.8 e was also investigated as a means to mimic polarization and charge transfer effects. The 0.8-scaling led to significant improvements for ΔH, surface tension, and self-diffusivity; however, a concern when scaling charges is the potential degradation of local intermolecular interactions at short ranges. Radial distribution functions (RDFs) were used to examine cation-anion interactions when employing 0.8*OPLS-2009IL and the scaled force field accurately reproduced RDFs from ab initio MD simulations.
我们的OPLS - 2009IL力场参数(《化学理论与计算杂志》,2009年,第5卷,1038 - 1050页)最初是针对68种具有1 - 烷基 - 3 - 甲基咪唑鎓[RMIM]、N - 烷基吡啶鎓[RPyr]和胆碱阳离子的独特离子液体开发并测试的。实验验证仅限于当时文献中报道的密度以及一些(大多相互矛盾的)汽化热(ΔH)值。由于使用蒙特卡罗作为我们的采样技术,也无法研究动力学的重现性。在这项工作中重新审视了[RMIM] OPLS - 2009IL参数,并使其适用于分子动力学(MD)模拟。此外,还为多种阴离子开发了新的OPLS - AA参数,即AlCl、BF、Br、Cl、NO、PF、醋酸根、苯甲酸根、双(五氟乙基磺酰基)酰胺、双(三氟乙基磺酰基)酰胺、二氰胺、甲酸根、甲基硫酸根、高氯酸根、丙酸根、硫氰酸根、三氰甲烷化物和三氟甲磺酸根。计算得到的溶剂密度、汽化热、粘度、扩散系数、热容、表面张力以及其他相关溶剂数据与实验结果相比表现良好。还研究了±0.8 e的电荷缩放作为模拟极化和电荷转移效应的一种方法。0.8的缩放导致ΔH、表面张力和自扩散率有显著改善;然而,缩放电荷时的一个问题是短程局部分子间相互作用可能会退化。当采用0.8 * OPLS - 2009IL时,径向分布函数(RDFs)用于检查阳离子 - 阴离子相互作用,并且缩放后的力场准确地重现了从头算MD模拟得到的RDFs。