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基于1,3 - 二甲基咪唑鎓的离子液体的AMOEBA力场开发

Development of AMOEBA force field for 1,3-dimethylimidazolium based ionic liquids.

作者信息

Starovoytov Oleg N, Torabifard Hedieh, Cisneros G Andrés

机构信息

Department of Chemistry, Wayne State University , Detroit, Michigan 48202, United States.

出版信息

J Phys Chem B. 2014 Jun 26;118(25):7156-66. doi: 10.1021/jp503347f. Epub 2014 Jun 17.

DOI:10.1021/jp503347f
PMID:24901255
Abstract

The development of AMOEBA (a multipolar polarizable force field) for imidazolium based ionic liquids is presented. Our parametrization method follows the AMOEBA procedure and introduces the use of QM intermolecular total interactions as well as QM energy decomposition analysis (EDA) to fit individual interaction energy components. The distributed multipoles for the cation and anions have been derived using both the Gaussian distributed multipole analysis (GDMA) and Gaussian electrostatic model-distributed multipole (GEM-DM) methods.1 The intermolecular interactions of a 1,3-dimethylimidazolium [dmim(+)] cation with various anions, including fluoride [F(-)], chloride [Cl(-)], nitrate [NO(3)(-)], and tetraflorouborate [BF(4)(-)], were studied using quantum chemistry calculations at the MP2/6-311G(d,p) level of theory. Energy decomposition analysis was performed for each pair using the restricted variational space decomposition approach (RVS) at the HF/6-311G(d,p) level. The new force field was validated by running a series of molecular dynamic (MD) simulations and by analyzing thermodynamic and structural properties of these systems. A number of thermodynamic properties obtained from MD simulations were compared with available experimental data. The ionic liquid structure reproduced using the AMOEBA force field is also compared with the data from neutron diffraction experiment and other MD simulations. Employing GEM-DM force fields resulted in a good agreement on liquid densities ρ, enthalpies of vaporization ΔH(vap), and diffusion coefficients D(±) in comparison with conventional force fields.

摘要

介绍了用于咪唑基离子液体的AMOEBA(一种多极可极化力场)的开发。我们的参数化方法遵循AMOEBA程序,并引入了量子力学分子间总相互作用以及量子力学能量分解分析(EDA)来拟合各个相互作用能分量。阳离子和阴离子的分布多极已使用高斯分布多极分析(GDMA)和高斯静电模型分布多极(GEM-DM)方法得出。1使用MP2/6-311G(d,p)理论水平的量子化学计算研究了1,3-二甲基咪唑鎓[dmim(+)]阳离子与各种阴离子之间的分子间相互作用,这些阴离子包括氟化物[F(-)]、氯化物[Cl(-)]、硝酸盐[NO(3)(-)]和四氟硼酸盐[BF(4)(-)]。使用HF/6-311G(d,p)水平的受限变分空间分解方法(RVS)对每对进行能量分解分析。通过运行一系列分子动力学(MD)模拟并分析这些系统的热力学和结构性质,对新的力场进行了验证。将MD模拟获得的一些热力学性质与可用的实验数据进行了比较。还将使用AMOEBA力场再现的离子液体结构与中子衍射实验数据和其他MD模拟数据进行了比较。与传统力场相比,采用GEM-DM力场在液体密度ρ、汽化焓ΔH(vap)和扩散系数D(±)方面取得了很好的一致性。

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