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The elusive excited states of bithiophene: a CASPT2 detective story

机译:联噻吩的难以捉摸的激发态:CASPT2侦探故事

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摘要

A systematic multi-reference perturbation theory investigation of the excitation energies and oscillator strengths for the lowest excited states of 2,2′-bithiophene unequivocally shows that its optical spectrum is produced by two 1 B u states separated from each other by approximately 1 eV. This picture is confirmed by additional calculations with alternative quantum chemical methods. Our findings are in strong contrast with the previous CASPT2 results of Rubio et al. [J Chem Phys 102:3580 (1995) and Chem Phys Chem 4:1308 (2003)], who predicted that the two lowest 1 B u states are quasi-degenerate. The methodological reasons responsible for the previous seemingly erroneous assignment of the optical spectrum of bithiophene are identified and explained in terms of unusually large coupling between the 1 B u states introduced by dynamical correlation effects. A general discussion of applicable computational techniques is offered aiming at avoiding similar problems for other molecular systems.
机译:对2,2'-联噻吩最低激发态的激发能和振荡器强度的系统多参考摄动理论研究明确表明,其光谱是由两个1 B u 态分开产生的彼此相差约1 eV。该图片通过其他量子化学方法的额外计算得到了证实。我们的发现与Rubio等人先前的CASPT2结果形成鲜明对比。 [J Chem Phys 102:3580(1995)和Chem Phys Chem 4:1308(2003)],他们预测最低的两个1 B u 状态是准简并的。通过动态相关效应引入的1 B u 状态之间异常大的耦合,确定并解释了造成以前的联噻吩光谱看似错误分配的方法学原因。为了避免其他分子系统出现类似问题,对适用的计算技术进行了一般性讨论。

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