Cheng Li-Tien, Dzubiella Joachim, McCammon J Andrew, Li Bo
Department of Mathematics, University of California, San Diego, La Jolla, California 92093-0112, USA.
J Chem Phys. 2007 Aug 28;127(8):084503. doi: 10.1063/1.2757169.
A level-set method is developed for numerically capturing the equilibrium solute-solvent interface that is defined by the recently proposed variational implicit solvent model [Dzubiella, Swanson, and McCammon, Phys. Rev. Lett. 104, 527 (2006); J. Chem. Phys. 124, 084905 (2006)]. In the level-set method, a possible solute-solvent interface is represented by the zero level set (i.e., the zero level surface) of a level-set function and is eventually evolved into the equilibrium solute-solvent interface. The evolution law is determined by minimization of a solvation free energy functional that couples both the interfacial energy and the van der Waals type solute-solvent interaction energy. The surface evolution is thus an energy minimizing process, and the equilibrium solute-solvent interface is an output of this process. The method is implemented and applied to the solvation of nonpolar molecules such as two xenon atoms, two parallel paraffin plates, helical alkane chains, and a single fullerence C(60). The level-set solutions show good agreement for the solvation energies when compared to available molecular dynamics simulations. In particular, the method captures solvent dewetting (nanobubble formation) and quantitatively describes the interaction in the strongly hydrophobic plate system.
我们开发了一种水平集方法,用于数值捕捉由最近提出的变分隐式溶剂模型定义的平衡溶质 - 溶剂界面[Dzubiella、Swanson和McCammon,《物理评论快报》104,527 (2006);《化学物理杂志》124,084905 (2006)]。在水平集方法中,可能的溶质 - 溶剂界面由水平集函数的零水平集(即零水平曲面)表示,并最终演化为平衡溶质 - 溶剂界面。演化规律由一个溶剂化自由能泛函的最小化确定,该泛函耦合了界面能和范德华型溶质 - 溶剂相互作用能。因此,表面演化是一个能量最小化过程,平衡溶质 - 溶剂界面是这个过程的输出。该方法被实现并应用于非极性分子的溶剂化,如两个氙原子、两个平行的石蜡板、螺旋烷链和单个富勒烯C(60)。与现有的分子动力学模拟相比,水平集解在溶剂化能方面显示出良好的一致性。特别是,该方法捕捉到了溶剂去湿(纳米气泡形成)并定量描述了强疏水板系统中的相互作用。