Yokogawa Daisuke, Suda Kayo
Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.
J Chem Phys. 2021 Nov 28;155(20):204102. doi: 10.1063/5.0067248.
The application of analytical derivative methods to solution systems is important because several chemical reactions occur in solution. The reference interaction site model (RISM) is one of the solvation theories used to study solution systems and has shown good performance, especially in the polar solvent systems. Although the analytical first derivative based on the RISM coupled with quantum methods (RISM-SCF) has already been derived, the analytical second derivative has not been proposed yet. Therefore, in this study, the analytical second derivative was derived using RISM-SCF explicitly including constrained spatial electron density distribution (RISM-SCF-cSED). The performance of this method was validated with the Hessian calculations of formaldehyde and para-nitroaniline in solution, and the results demonstrated that the method accurately calculated frequency values at a small computational cost.
将分析导数方法应用于溶液体系很重要,因为溶液中会发生多种化学反应。参考相互作用位点模型(RISM)是用于研究溶液体系的溶剂化理论之一,并且已表现出良好的性能,尤其是在极性溶剂体系中。尽管基于RISM与量子方法相结合的分析一阶导数(RISM-SCF)已经推导出来,但分析二阶导数尚未被提出。因此,在本研究中,使用明确包含受限空间电子密度分布的RISM-SCF(RISM-SCF-cSED)推导了分析二阶导数。通过对溶液中甲醛和对硝基苯胺的海森矩阵计算验证了该方法的性能,结果表明该方法以较小的计算成本准确地计算了频率值。