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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Approximate Inclusion of Triple Excitations in Combined Coupled Cluster/Molecular Mechanics: Calculations of Electronic Excitation Energies in Solution for Acrolein, Water, Formamide, and N-Methylacetamide
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Approximate Inclusion of Triple Excitations in Combined Coupled Cluster/Molecular Mechanics: Calculations of Electronic Excitation Energies in Solution for Acrolein, Water, Formamide, and N-Methylacetamide

机译:组合簇/分子力学中三重激发的近似包含:丙烯醛,水,甲酰胺和N-甲基乙酰胺溶液中电子激发能的计算

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摘要

Electronic excitation energies are often significantly affected by perturbing surroundings such as, for example, solvent molecules. Correspondingly, for an accurate comparison between theory and experiment, the inclusion of solvent effects in high-level theoretical predictions is important. Here, we introduce the CCSDR(3)/MM model designed for an effective, flexible, and accurate prediction of electronic excitation energies in solution. The method is based on a hybrid coupled cluster/molecular mechanics (CC/MM) strategy including interagtions between a solute described by CC methods and a solvent described by polarizable MM methods. The CCSDR(3)/MM includes triples effects in a computational tractable noniterative fashion. The resulting approach allows for both high-accuracy inclusion of triples effects and inclusion of solute-solvent interactions with polarization effects, as well as being applicable for averaging over many solvent configurations derived from, for example, molecular simulations. We test the proposed model using as a benchmark the two lowest-lying valence singlet excitations (n →π* and π→π*) of acrolein, formamide, and N-methylacetamide in aqueous solution as well as liquid water, demonstrating how a systematic inclusion of many different effects leads to good agreement with experimental values. In doing so we also illustrate the theoretical challenges involved when investigating UV properties of solvated molecules.
机译:电子激发能通常受到诸如溶剂分子之类的扰动环境的显着影响。相应地,对于理论和实验之间的准确比较,将溶剂效应包括在高级理论预测中非常重要。在这里,我们介绍CCSDR(3)/ MM模型,该模型旨在有效,灵活和准确地预测溶液中的电子激发能。该方法基于混合耦合簇/分子力学(CC / MM)策略,包括通过CC方法描述的溶质和通过可极化MM方法描述的溶剂之间的相互作用。 CCSDR(3)/ MM以可计算的非迭代方式包括三重效果。所得方法既可以高精度地包含三重效应,也可以包含溶质与溶剂之间的相互作用以及极化效应,还可以用于对许多衍生自分子模拟的溶剂构型进行平均。我们以水溶液和液态水中丙烯醛,甲酰胺和N-甲基乙酰胺的两个最低价单线激发(n→π*和π→π*)作为基准测试提出的模型包含许多不同的影响导致与实验值良好的一致性。这样做时,我们还说明了研究溶剂化分子的紫外线特性时涉及的理论挑战。

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