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首页> 外文期刊>The Journal of Chemical Physics >Excited states and solvatochromic shifts within a nonequilibrium solvation approach: A new formulation of the integral equation formalism method at the self-consistent field, configuration interaction, and multiconfiguration self-consistent field lev
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Excited states and solvatochromic shifts within a nonequilibrium solvation approach: A new formulation of the integral equation formalism method at the self-consistent field, configuration interaction, and multiconfiguration self-consistent field lev

机译:非平衡溶剂化方法中的激发态和溶剂致变色:自洽场,构型相互作用和多构型自洽场lev下积分方程形式主义方法的新形式

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摘要

The effects of the solvation on excited states are studied in the framework of a nonequilibrium regime between solute and solvent charge distributions. The approach, which exploits a separation of the polarization into slow and fast components, is inserted in a new formulation of the recently developed continuum solvation model known as integral equation formalism. This new version, implying a large computational gain both in time consuming and memory occupation, is here implemented at the Hartree-Fock level as well as at the multiconfiguration self-consistent field and configuration interaction levels. Examples of application of the method to solvatochromic shifts for low-lying excitation energies of formaldehyde, acetaldehyde, and acetone in water are shown. (C) 1998 American Institute of Physics. [References: 44]
机译:在溶质和溶剂电荷分布之间的非平衡状态下,研究了溶剂化对激发态的影响。该方法利用将极化分离为慢速和快速分量的方法,被插入到最近开发的称为积分方程形式主义的连续介质溶剂化模型的新公式中。这个新版本意味着在耗时和占用内存上都将获得巨大的计算收益,在此可以在Hartree-Fock级别以及多配置自洽字段和配置交互级别上实现。示出了将该方法应用于溶剂变色转变以用于水中的甲醛,乙醛和丙酮的低位激发能的实例。 (C)1998美国物理研究所。 [参考:44]

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