Borodin Oleg
Wasatch Molecular Inc., 2141 St. Marys Drive, Ste 102, Salt Lake City, Utah 84108, USA.
J Phys Chem B. 2009 Aug 20;113(33):11463-78. doi: 10.1021/jp905220k.
A many-body polarizable force field has been developed and validated for ionic liquids (ILs) containing 1-methyl-3-alkylimidazolium, 1-alkyl-2-methyl-3-alkylimidazolium, N-methyl-N-alkylpyrrolidinium, N-alkylpyridinium, N-alkyl-N-alkylpiperidinium, N-alkyl-N-alkylmorpholinium, tetraalkylammonium, tetraalkylphosphonium, N-methyl-N-oligoetherpyrrolidinium cations and BF(4)(-), CF(3)BF(3)(-), CH(3)BF(3)(-), CF(3)SO(3)(-), PF(6)(-), dicyanamide, tricyanomethanide, tetracyanoborate, bis(trifluoromethane sulfonyl)imide (Ntf(2)(-) or TFSI(-)), bis(fluorosulfonyl)imide (FSI(-)) and nitrate anions. Classical molecular dynamics (MD) simulations have been performed on 30 ionic liquids at 298, 333, and 393 K. The IL density, heat of vaporization, ion self-diffusion coefficient, conductivity, and viscosity were found in a good agreement with available experimental data. Ability of the developed force field to predict ionic crystal cell parameters has been tested on four ionic crystals containing Ntf(2)(-) anions. The influence of polarization on the structure and ion transport has been investigated for [emim][BF(4)] IL. A connection between the structural changes in IL resulting from turning off polarization and slowing down of ion dynamics has been found. Developed force field has also provided accurate description/prediction of thermodynamic and transport properties of alkanes, fluoroalkanes, oligoethers (1,2-dimethoxyethane), ethylene carbonate, propylene carbonate, dimethyl carbonate, hydrazine, methyhydrazine, dimethylhydrazine, acetonitrile, dimethyl amine, and dimethyl ketone.
已开发并验证了一种多体可极化力场,用于含1-甲基-3-烷基咪唑鎓、1-烷基-2-甲基-3-烷基咪唑鎓、N-甲基-N-烷基吡咯烷鎓、N-烷基吡啶鎓、N-烷基-N-烷基哌啶鎓、N-烷基-N-烷基吗啉鎓、四烷基铵、四烷基鏻、N-甲基-N-低聚醚吡咯烷鎓阳离子以及BF(4)(-)、CF(3)BF(3)(-)、CH(3)BF(3)(-)、CF(3)SO(3)(-)、PF(6)(-)、双氰胺、三氰甲烷化物、四氰硼酸盐、双(三氟甲烷磺酰)亚胺(Ntf(2)(-)或TFSI(-))、双(氟磺酰)亚胺(FSI(-))和硝酸根阴离子的离子液体(ILs)。在298 K、333 K和393 K下对30种离子液体进行了经典分子动力学(MD)模拟。发现离子液体的密度、汽化热、离子自扩散系数、电导率和粘度与现有实验数据吻合良好。已在四种含Ntf(2)(-)阴离子的离子晶体上测试了所开发力场预测离子晶体晶胞参数的能力。针对[emim][BF(4)]离子液体,研究了极化对结构和离子传输的影响。发现了关闭极化导致离子液体结构变化与离子动力学减慢之间的联系。所开发的力场还对烷烃、氟代烷烃、低聚醚(1,2-二甲氧基乙烷)、碳酸亚乙酯、碳酸亚丙酯、碳酸二甲酯、肼、甲基肼、二甲基肼、乙腈、二甲胺和二甲基酮的热力学和传输性质提供了准确的描述/预测。