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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Performance of the Density Functional Theory/ Multireference Configuration Interaction Method on Electronic Excitation of Extended π-Systems
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Performance of the Density Functional Theory/ Multireference Configuration Interaction Method on Electronic Excitation of Extended π-Systems

机译:密度泛函/多参考构型相互作用方法在扩展π系统电子激励中的性能

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摘要

The combined density functional theory/multireference configuration interaction (DFT/MRCI) method [Grimme and Waletzke. J. Chem. Phys. 1999, 111, 5645] has been employed to study the ~1L_a and ~1L_b states of linear polyacenes and the low-lying triplet and singlet states of linear polyenes and diphenyl-polyenes. We have systematically investigated the dependence of the electronic state properties on technical parameters of the calculations such as the atomic orbital basis set or the geometry optimization approach. The choice of basis set appears to be of minor importance whereas the excitation energies of the polyenes are quite sensitive to the ground-state geometry parameters. The DFT/MRCI energies at the B3-LYP optimized geometries systematically underestimate the experimental values, but we do not observe a bias toward one or the other type of state. The energy gaps between the electronically excited states are reproduced very well. In particular, this applies also to the first excited singlet 2 ~1A_g~- and the optically bright ~1B_u~+ state of the polyenes. The latter appears to be the S3 or even S4 state in longer polyenes where the multiconfigurational ~1B_u~- state represents S2. Frequencies and intensities of the excited-state absorption from the 2 ~1A_g~- state are found to be strongly geometry dependent.
机译:组合密度泛函理论/多参考配置相互作用(DFT / MRCI)方法[Grimme和Waletzke。 J.化学物理1999,111,5645]已用于研究线性聚并苯的〜1L_a和〜1L_b态以及线性多烯和二苯基多烯的低价三重态和单重态。我们已经系统地研究了电子态属性对计算技术参数(如原子轨道基础集或几何优化方法)的依赖性。基集的选择似乎不太重要,而多烯的激发能对基态几何参数非常敏感。 B3-LYP优化几何结构的DFT / MRCI能量系统地低估了实验值,但我们没有观察到偏向一种或另一种状态的偏见。电子激发态之间的能隙很好地再现。特别地,这也适用于多烯的第一激发单线态2〜1A_g〜-和光学上明亮的〜1B_u〜+态。后者在较长的多烯中似乎是S3或什至S4状态,其中多配置〜1B_u--状态表示S2。发现从2〜1A_g〜-态激发态吸收的频率和强度与几何形状密切相关。

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