Laufer Center for Physical and Quantitative Biology, Stony Brook University, Stony Brook, New York 11794, USA.
J Phys Chem B. 2012 Jun 14;116(23):6936-44. doi: 10.1021/jp3002383. Epub 2012 Mar 21.
Molecular simulations often use explicit-solvent models. Sometimes explicit-solvent models can give inaccurate values for basic liquid properties, such as the density, heat capacity, and permittivity, as well as inaccurate values for molecular transfer free energies. Such errors have motivated the development of more complex solvents, such as polarizable models. We describe an alternative here. We give new fixed-charge models of solvents for molecular simulations--water, carbon tetrachloride, chloroform, and dichloromethane. Normally, such solvent models are parametrized to agree with experimental values of the neat liquid density and enthalpy of vaporization. Here, in addition to those properties, our parameters are chosen to give the correct dielectric constant. We find that these new parametrizations also happen to give better values for other properties, such as the self-diffusion coefficient. We believe that parametrizing fixed-charge solvent models to fit experimental dielectric constants may provide better and more efficient ways to treat solvents in computer simulations.
分子模拟通常使用显式溶剂模型。有时,显式溶剂模型会对基本液体性质(如密度、热容和介电常数)以及分子迁移自由能给出不准确的值。这些误差促使人们开发了更复杂的溶剂,如极化模型。我们在这里介绍一种替代方法。我们为分子模拟提供了新的固定电荷溶剂模型——水、四氯化碳、氯仿和二氯甲烷。通常,此类溶剂模型的参数化是为了与纯液体密度和蒸发热的实验值一致。在这里,除了这些性质之外,我们的参数还选择了正确的介电常数。我们发现这些新的参数化还恰好为其他性质(如自扩散系数)提供了更好的值。我们相信,通过将固定电荷溶剂模型参数化以拟合实验介电常数,可能为计算机模拟中处理溶剂提供更好、更有效的方法。