Yokogawa Daisuke, Suda Kayo
Graduate School of Arts and Science, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.
J Phys Chem A. 2020 Nov 19;124(46):9665-9673. doi: 10.1021/acs.jpca.0c07425. Epub 2020 Nov 10.
In this study, an electrostatic potential (ESP) fitting method using constrained spatial electron density (cSED) expanded with preorthogonal natural atomic orbitals (pNAOs) was proposed. In this method, the electron density of a molecule is divided into spherical atom-centered electron densities and the expansion coefficient is determined to reproduce the ESP around the molecule. Our method was then applied to two systems: (i) a hydration reaction of -platin and (ii) a variety of organic/inorganic molecules. By evaluating the atomic charges along the hydration reaction, our method showed good conformational transferability, which cannot be obtained using conventional ESP fitting methods. Moreover, we successfully obtained the hydration structure along the reaction by coupling our method with a reference interaction site model (RISM). Reasonable data were obtained not only for organic molecules but also for inorganic molecules. This success came from the introduction of pNAOs as auxiliary basis sets in the charge fitting.
在本研究中,提出了一种使用预正交自然原子轨道(pNAO)展开的受限空间电子密度(cSED)的静电势(ESP)拟合方法。在该方法中,分子的电子密度被划分为以原子为中心的球形电子密度,并确定展开系数以重现分子周围的ESP。然后将我们的方法应用于两个体系:(i)-铂的水合反应和(ii)各种有机/无机分子。通过评估水合反应过程中的原子电荷,我们的方法显示出良好的构象转移性,这是使用传统ESP拟合方法无法获得的。此外,通过将我们的方法与参考相互作用位点模型(RISM)相结合,我们成功地获得了反应过程中的水合结构。不仅对于有机分子,而且对于无机分子都获得了合理的数据。这一成功源于在电荷拟合中引入了pNAO作为辅助基组。