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Coupling the Level-Set Method with Molecular Mechanics for Variational Implicit Solvation of Nonpolar Molecules

机译:水平集方法与分子力学的非极性分子变分隐式求解的耦合

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摘要

We construct a variational explicit-solute implicit-solvent model for the solvation of molecules. Central in this model is an effective solvation free-energy functional that depends solely on the position of solute-solvent interface and solute atoms. The total free energy couples altogether the volume and interface energies of solutes, the solute-solvent van der Waals interactions, and the solute-solute mechanical interactions. A curvature dependent surface tension is incorporated through the so-called Tolman length which serves as the only fitting parameter in the model. Our approach extends the original variational implicit-solvent model of Dzubiella, Swanson, and McCammon [Phys. Rev. Lett. >2006, 96, 087802 and J. Chem. Phys. >2006, 124, 084905] to include the solute molecular mechanics. We also develop a novel computational method that combines the level-set technique with optimization algorithms to determine numerically the equilibrium conformation of nonpolar molecules. Numerical results demonstrate that our new model and methods can capture essential properties of nonpolar molecules and their interactions with the solvent. In particular, with a suitable choice of the Tolman length for the curvature correction to the surface tension, we obtain the solvation free energy for a benzene molecule in a good agreement with experimental results.
机译:我们构建了一个变分的显式-溶质隐式溶剂模型用于分子的溶剂化。该模型的中心是有效的溶剂化自由能功能,该功能仅取决于溶质-溶剂界面和溶质原子的位置。总的自由能总共耦合溶质的体积和界面能,溶质-溶剂范德华相互作用和溶质-溶质机械相互作用。曲率相关的表面张力通过所谓的托尔曼长度(Tolman length)并入模型,该长度用作模型中的唯一拟合参数。我们的方法扩展了Dzubiella,Swanson和McCammon的原始变分隐式溶剂模型[Phys。牧师> 2006 ,96、087802和J. Chem。物理> 2006 ,124,084905]包括溶质分子力学。我们还开发了一种新颖的计算方法,该方法将水平集技术与优化算法相结合,以数字方式确定非极性分子的平衡构象。数值结果表明,我们的新模型和方法可以捕获非极性分子的基本性质及其与溶剂的相互作用。特别地,通过适当选择托尔曼长度以对表面张力进行曲率校正,我们获得了苯分子的溶剂化自由能,与实验结果非常吻合。

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