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用 CCSD-PCM 方法计算溶液中垂直电子跃迁能的状态特定和线性响应理论的比较。

A comparison between state-specific and linear-response formalisms for the calculation of vertical electronic transition energy in solution with the CCSD-PCM method.

机构信息

Gaussian, Inc., 340 Quinnipiac St. Bldg. 40, Wallingford, Connecticut 06492, USA.

出版信息

J Chem Phys. 2013 Jul 28;139(4):044116. doi: 10.1063/1.4816482.

Abstract

The calculation of vertical electronic transition energies of molecular systems in solution with accurate quantum mechanical methods requires the use of approximate and yet reliable models to describe the effect of the solvent on the electronic structure of the solute. The polarizable continuum model (PCM) of solvation represents a computationally efficient way to describe this effect, especially when combined with coupled cluster (CC) methods. Two formalisms are available to compute transition energies within the PCM framework: State-Specific (SS) and Linear-Response (LR). The former provides a more complete account of the solute-solvent polarization in the excited states, while the latter is computationally very efficient (i.e., comparable to gas phase) and transition properties are well defined. In this work, I review the theory for the two formalisms within CC theory with a focus on their computational requirements, and present the first implementation of the LR-PCM formalism with the coupled cluster singles and doubles method (CCSD). Transition energies computed with LR- and SS-CCSD-PCM are presented, as well as a comparison between solvation models in the LR approach. The numerical results show that the two formalisms provide different absolute values of transition energy, but similar relative solvatochromic shifts (from nonpolar to polar solvents). The LR formalism may then be used to explore the solvent effect on multiple states and evaluate transition probabilities, while the SS formalism may be used to refine the description of specific states and for the exploration of excited state potential energy surfaces of solvated systems.

摘要

用精确的量子力学方法计算处于溶液状态的分子体系的垂直电子跃迁能,需要使用近似但可靠的模型来描述溶剂对溶质电子结构的影响。溶剂化的极化连续体模型 (PCM) 是描述这种影响的一种计算效率高的方法,特别是与耦合簇 (CC) 方法结合使用时。在 PCM 框架内计算跃迁能有两种形式:状态特定 (SS) 和线性响应 (LR)。前者在激发态中提供了对溶质-溶剂极化更完整的描述,而后者在计算上非常高效(即与气相相当),并且跃迁性质定义良好。在这项工作中,我回顾了 CC 理论中两种形式的理论,重点介绍了它们的计算要求,并首次实现了与耦合簇单双激发方法 (CCSD) 相结合的 LR-PCM 形式。呈现了用 LR-和 SS-CCSD-PCM 计算的跃迁能,以及 LR 方法中不同溶剂化模型之间的比较。数值结果表明,这两种形式提供了不同的跃迁能绝对值,但相似的相对溶剂化变色(从非极性到极性溶剂)。因此,LR 形式可用于探索多个状态的溶剂效应和评估跃迁概率,而 SS 形式可用于改进特定状态的描述,并探索溶剂化体系的激发态势能表面。

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