Goncalves Paulo F B, Stassen Hubert
Grupo de Química Teórica, Instituto de Química, Universidade Federal do Rio Grande do Sul, Avenida Bento Gonçalves, Rio Grande do Sul, Brazil.
J Chem Phys. 2005 Dec 1;123(21):214109. doi: 10.1063/1.2132282.
The free energy of solvation for a large number of representative solutes in various solvents has been calculated from the polarizable continuum model coupled to molecular dynamics computer simulation. A new algorithm based on the Voronoi-Delaunay triangulation of atom-atom contact points between the solute and the solvent molecules is presented for the estimation of the solvent-accessible surface surrounding the solute. The volume of the inscribed cavity is used to rescale the cavitational contribution to the solvation free energy for each atom of the solute atom within scaled particle theory. The computation of the electrostatic free energy of solvation is performed using the Voronoi-Delaunay surface around the solute as the boundary for the polarizable continuum model. Additional short-range contributions to the solvation free energy are included directly from the solute-solvent force field for the van der Waals-type interactions. Calculated solvation free energies for neutral molecules dissolved in benzene, water, CCl4, and octanol are compared with experimental data. We found an excellent correlation between the experimental and computed free energies of solvation for all the solvents. In addition, the employed algorithm for the cavity creation by Voronoi-Delaunay triangulation is compared with the GEPOL algorithm and is shown to predict more accurate free energies of solvation, especially in solvents composed by molecules with nonspherical molecular shapes.
通过将可极化连续介质模型与分子动力学计算机模拟相结合,计算了多种代表性溶质在不同溶剂中的溶剂化自由能。提出了一种基于溶质与溶剂分子间原子 - 原子接触点的Voronoi - Delaunay三角剖分的新算法,用于估算溶质周围的溶剂可及表面。在定标粒子理论中,内接空腔的体积用于重新调整溶质每个原子对溶剂化自由能的空穴贡献。使用溶质周围的Voronoi - Delaunay表面作为可极化连续介质模型的边界来计算溶剂化静电自由能。对于范德华型相互作用,溶剂化自由能的额外短程贡献直接来自溶质 - 溶剂力场。将溶解在苯、水、四氯化碳和辛醇中的中性分子的计算溶剂化自由能与实验数据进行了比较。我们发现所有溶剂的实验和计算溶剂化自由能之间都有极好的相关性。此外,将采用Voronoi - Delaunay三角剖分创建空腔的算法与GEPOL算法进行了比较,结果表明该算法能预测更准确的溶剂化自由能,尤其是在由非球形分子组成的溶剂中。