Su Peifeng, Li Hui
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska 68588, USA.
J Chem Phys. 2009 Feb 21;130(7):074109. doi: 10.1063/1.3077917.
Rigorously continuous and smooth potential energy surfaces, as well as exact analytic gradients, are obtained for a conductorlike screening solvation model (CPCM, a variant of the general COSMO) with Hartree-Fock (RHF, ROHF, UHF, and MCSCF) and density functional theory (R-DFT, RO-DFT, and U-DFT) methods using a new tessellation scheme, fixed points with variable areas (FIXPVA). In FIXPVA, spheres centered at atoms are used to define the molecular cavity and surface. The surface of each sphere is divided into 60, 240, or 960 tesserae, which have positions fixed relative to the sphere center and areas scaled by switching functions of their distances to neighboring spheres. Analytic derivatives of the positions and areas of the surface tesserae with respect to atomic coordinates can be obtained and used to evaluate the solvation energy gradients. Due to the accurate analytic gradients and smooth potential energy surface, geometry optimization processes using these methods are stable and convergent.
使用一种新的镶嵌方案——可变面积固定点(FIXPVA),通过Hartree-Fock(RHF、ROHF、UHF和MCSCF)以及密度泛函理论(R-DFT、RO-DFT和U-DFT)方法,为类导体屏蔽溶剂化模型(CPCM,一般COSMO的变体)获得了严格连续且平滑的势能面以及精确的解析梯度。在FIXPVA中,以原子为中心的球体用于定义分子腔和表面。每个球体的表面被划分为60、240或960个镶嵌块,它们相对于球心的位置固定,其面积通过与相邻球体距离的切换函数进行缩放。可以获得表面镶嵌块的位置和面积相对于原子坐标的解析导数,并用于评估溶剂化能梯度。由于精确的解析梯度和平滑的势能面,使用这些方法的几何优化过程是稳定且收敛的。