首页> 外文期刊>Russian Journal of Physical Chemistry >Structure and Conformational Dynamics of a 2,2-Dimethylpropanal Molecule in the Lowest Excited Singlet (S_1) and Triplet (Т_1) Electronic States
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Structure and Conformational Dynamics of a 2,2-Dimethylpropanal Molecule in the Lowest Excited Singlet (S_1) and Triplet (Т_1) Electronic States

机译:在最低激发态(S_1)和三重态(Т_1)电子状态下2,2-二甲基丙杂化分子的结构和构象动态

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摘要

The geometric structure, PES, and conformational dynamics of a 2,2-dimethylpropanal molecule in the lowest excited singlet and triplet electronic states are studied using the multiconfigurational CASPT2/def2-TZVPP approach. The problem of large-amplitude nuclear motions (the rotation of the tertbutyl group and the inversion of the nonplanar carbonyl moiety) is solved for each electronic state by variational means. It is shown that electronic excitation to both states causes the pyramidalization of the ССHO carbonyl moiety and rotation of the tert-butyl group. Results confirm the qualitative conclusions of an earlier analysis of the S+1 ← S_0 vibronic spectrum of a 2,2-dimethylpropanal molecule.
机译:使用多功能性Caspt2 / DEF2-TZVPP方法研究了最低激发态态和三重态电子状态中的2,2-二甲基丙杂化分子的几何结构,PE和构象动态。 通过变分装置解决了大振幅核动脉(叔丁基的旋转和叔丁基的旋转和非平坦羰基部分的反转)。 结果表明,两种状态的电子激发导致ССHO羰基部分的冠状动脉化和叔丁基的旋转。 结果证实了2,2-二甲基丙醛分子的S + 1←S_0振动谱的前面分析的定性结论。

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