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首页> 外文期刊>Journal of Molecular Spectroscopy >Vibronic spectra, ab initio calculations, and structures of conformationally non-rigid molecules of oxalyl halides in the ground and lowest excited electronic states. Part III: Theoretical investigation of oxalyl fluoride
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Vibronic spectra, ab initio calculations, and structures of conformationally non-rigid molecules of oxalyl halides in the ground and lowest excited electronic states. Part III: Theoretical investigation of oxalyl fluoride

机译:处于基态和最低激发电子态的草酰卤化物的构象非刚性分子的振动光谱,从头算和结构。第三部分:草酰氟的理论研究

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We present a theoretical investigation of oxalyl fluoride (COF)_2 in the ground and the four lowest excited (two singlet and two triplet) electronic states of the n,π*-type mainly with the CASPT2(8-6)/cc-pVTZ method. Geometries, vibrational frequencies, potential energy functions of internal rotation, and adiabatic electronic transition energies were obtained. The conformer energy difference and the barrier to internal rotation in the ground electronic state were extrapolated to the complete basis set limit. The planar trans and cis conformations were the most stable configurations for all five electronic states under study. We found that the allowed electronic transition of the cis conformer has a transition energy that is significantly higher than that predicted in previous studies. For the excited states, the internal rotation was found to be accompanied by significant non-planar distortion of both carbonyl fragments, indicating strong coupling between these molecular motions.
机译:我们对CASAL2(8-6)/ cc-pVTZ的地下草酰氟(COF)_2和n,π*型的四个最低激发电子态(两个单重态和两个三重态)进行了理论研究方法。获得了几何形状,振动频率,内部旋转的势能函数以及绝热电子跃迁能。在地面电子状态下,构象异构体的能量差和内部旋转的障碍被推算到完整的基准设定极限。平面反式和顺式构象是所研究的所有五个电子态最稳定的构型。我们发现顺式构象体的允许电子跃迁的跃迁能明显高于先前研究中预测的跃迁能。对于激发态,发现内部旋转伴有两个羰基片段的明显非平面变形,表明这些分子运动之间的强耦合。

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