首页> 外文期刊>The Journal of Chemical Physics >Rotationally resolved studies of S-0 and the exciton coupled S-1/S-2 origin regions of diphenylmethane and the d(12) isotopologue
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Rotationally resolved studies of S-0 and the exciton coupled S-1/S-2 origin regions of diphenylmethane and the d(12) isotopologue

机译:S-0和激子耦合的S-1 / S-2二苯甲烷起源区域和d(12)同位素同位体的旋转解析研究

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Rotationally resolved microwave and ultraviolet spectra of jet-cooled diphenylmethane (DPM) and DPM-d(12) have been obtained in S-0, S-1, and S-2 electronic states using Fourier-transform microwave and UV laser/molecular beam spectrometers. The S-0 and S-1 states of both isotopologues have been well fit to asymmetric rotor Hamiltonians that include only Watson distortion parameters. The transition dipole moment (TDM) orientations of DPM and DPM-d(12) are perpendicular to the C-2 symmetry axes with 66(2)%:34(2)% a:c hybrid-type character, establishing the lower exciton S-1 origin as a completely delocalized, antisymmetric combination of the zero-order locally excited states of the toluene-like chromophores. In contrast, the rotational structures of the S-2 origin bands at S-1+123 cm(-1) and S-1+116 cm(-1), respectively, display b-type Q-branch transitions and lack the central a-type Q-branch features that characterize the S-1 origins, indicating TDM orientations parallel to the C-2(b) symmetry axes as anticipated for the upper exciton levels. However, rotational fits were not possible in line with expectations from previous work [N. R. Pillsbury, J. A. Stearns, C. W. Muller, T. S. Zwier, and D. F. Plusquellic, J. Chem. Phys. 129, 114301 (2008)] where the S-2 origins were found to be largely perturbed through vibronic interactions with the S-1 symmetric, antisymmetric torsional, and butterfly levels in close proximity. Predictions from a dipole-dipole coupling model and ab initio theories are shown to be in fair agreement with the observed TDM orientations and exciton splitting. The need to include out-of-ring-plane dipole coupling terms indicates that in-plane models are not sufficient to fully account for the excitonic interactions in this bichromophore.
机译:使用傅立叶变换微波和UV激光/分子束在S-0,S-1和S-2电子状态下获得了喷射冷却的二苯甲烷(DPM)和DPM-d(12)的旋转分辨微波和紫外光谱光谱仪。两种同位素的S-0和S-1状态都非常适合仅包含沃森畸变参数的非对称转子哈密顿量。 DPM和DPM-d(12)的跃迁偶极矩(TDM)方向垂直于C-2对称轴,具有66(2)%:34(2)%a:c混合型特征,建立了较低的激子S-1起源是甲苯样生色团的零阶局部激发态的完全离域的,不对称的组合。相比之下,分别位于S-1 + 123 cm(-1)和S-1 + 116 cm(-1)的S-2原带的旋转结构显示b型Q分支跃迁,并且缺乏中心表征S-1起源的a型Q分支特征,表明TDM方向平行于C-2(b)对称轴,如上激子能级所预期的那样。然而,旋转配合不可能符合先前工作的期望[N. R.Pillsbury,J.A.Stearns,C.W.Muller,T.S.Zwier和D.F.Plusquellic,J.Chem。物理129,114301(2008)],其中S-2的起源在很大程度上受到与S-1对称,反对称扭转和蝶形水平的振动相互作用的干扰。偶极-偶极耦合模型和从头算理论的预测结果与所观察到的TDM方向和激子分裂完全吻合。需要包括环外平面偶极耦合项,这表明平面内模型不足以完全说明该双色团中的激子相互作用。

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