Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska 68588, USA.
J Chem Phys. 2009 Nov 14;131(18):184103. doi: 10.1063/1.3259550.
Linear response and variational treatment are formulated for Hartree-Fock (HF) and Kohn-Sham density functional theory (DFT) methods and combined discrete-continuum solvation models that incorporate self-consistently induced dipoles and charges. Due to the variational treatment, analytic nuclear gradients can be evaluated efficiently for these discrete and continuum solvation models. The forces and torques on the induced point dipoles and point charges can be evaluated using simple electrostatic formulas as for permanent point dipoles and point charges, in accordance with the electrostatic nature of these methods. Implementation and tests using the effective fragment potential (EFP, a polarizable force field) method and the conductorlike polarizable continuum model (CPCM) show that the nuclear gradients are as accurate as those in the gas phase HF and DFT methods. Using B3LYP/EFP/CPCM and time-dependent-B3LYP/EFP/CPCM methods, acetone S(0)-->S(1) excitation in aqueous solution is studied. The results are close to those from full B3LYP/CPCM calculations.
线性响应和变分处理被制定为哈特ree-fock (HF) 和 Kohn-Sham 密度泛函理论 (DFT) 方法,以及结合自洽诱导偶极子和电荷的离散连续溶剂化模型。由于变分处理,可以有效地评估这些离散和连续溶剂化模型的解析核梯度。可以使用简单的静电公式评估诱导点偶极子和点电荷上的力和扭矩,就像对于永久点偶极子和点电荷一样,这符合这些方法的静电性质。使用有效片段势能 (EFP,一种极化力场) 方法和导体相似极化连续体模型 (CPCM) 的实现和测试表明,核梯度与气相 HF 和 DFT 方法一样准确。使用 B3LYP/EFP/CPCM 和时间相关-B3LYP/EFP/CPCM 方法,研究了在水溶液中丙酮 S(0)-->S(1) 激发。结果与全 B3LYP/CPCM 计算结果接近。