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Solvent Effects on Optical Properties of Molecules: A Combined Time-Dependent Density Functional Theory/Effective Fragment Potential Approach

机译:溶剂对分子光学性质的影响:组合的时变密度泛函理论/有效片段势方法

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摘要

A quantum mechanics/molecular mechanics (QM/MM) type of scheme is employed to calculate the solvent-induced shifts of molecular electronic excitations. The effective fragment potential (EFP) method was used for the classical potential. Since EFP has a density dependent functional form, in contrast with most other MM potentials, time-dependent density functional theory (TDDFT) has been modified to combine TDDFT with EFP. This new method is then used to perform a hybrid QM/MM molecular dynamics simulation to generate a simulated spectrum of the n→π∗ vertical excitation energy of acetone in vacuum and with 100 water molecules. The calculated watersolvent effect on the vertical excitation energy exhibits a blueshift of the n→π∗ vertical excitation energy in acetone (Δω1=0.211 eV), which is in good agreement with the experimental blueshift.
机译:使用量子力学/分子力学(QM / MM)类型的方案来计算溶剂诱导的分子电子激发的位移。有效片段电势(EFP)方法用于经典电势。由于EFP具有与密度有关的功能形式,因此与大多数其他MM势能相反,已对基于时间的密度功能理论(TDDFT)进行了修改,以将TDDFT与EFP相结合。然后,该新方法用于执行混合QM / MM分子动力学模拟,以生成在真空中和100个水分子的情况下丙酮的n→π*垂直激发能的模拟光谱。计算得出的水溶剂对垂直激发能的影响表现为丙酮中n→π*垂直激发能的蓝移(Δω1= 0.211 eV),与实验蓝移非常吻合。

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