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Excited state mixed valence in a dual-bridged three-chromophore system

机译:双桥三色团体系中的激发态混合价

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The optical and resonance Raman spectra of the 2,2′: 6′,2″:6″,6-trioxytriphenyl-amine cation are measured and interpreted. This molecule contains two simultaneous types of coupling between three chromophores and two types of bridging atoms. The first and conventional coupling involves a single nitrogen bridge that couples all three aryl groups. The second is provided by the three oxygen atoms, each of which bridges two adjacent aryl groups. There are two bands in the visible region of the optical absorption spectrum; their assignment and the interpretation of the contributing orbitals and electronic states are described in terms of the neighboring orbital model that explains the effects of the two types of coupling. The bonding changes that take place in the excited electronic states are probed by resonance Raman spectroscopy intensities and analyzed using the time-dependent theory of resonance Raman spectroscopy. The optical absorption spectrum was fit using the measured vibrational frequencies and excited state distortions. The distortions correlate well with the bonding changes predicted by the neighboring orbital model. The resonance Raman data and neighboring orbital model analysis reveal that the two optical absorption bands correspond to charge transfers from aryl groups with different nodal structures in their pi orbitals.
机译:测量并解释了2,2':6',2'':6'',6-三氧基三苯基-胺阳离子的光学和共振拉曼光谱。该分子在三个发色团和两种桥接原子之间同时包含两种偶联类型。第一次和常规偶联涉及单个氮桥,该氮桥偶联所有三个芳基。第二个由三个氧原子提供,每个氧原子桥接两个相邻的芳基。在光吸收光谱的可见区域中有两个谱带。根据相邻的轨道模型描述了它们的分配以及对贡献轨道和电子状态的解释,该模型解释了两种耦合的影响。通过共振拉曼光谱强度探测在激发电子态中发生的键变化,并使用共振拉曼光谱的时变理论进行分析。使用测得的振动频率和激发态畸变拟合光吸收光谱。畸变与相邻轨道模型预测的键合变化密切相关。共振拉曼数据和邻近的轨道模型分析表明,两个光学吸收带对应于来自其pi轨道中具有不同节点结构的芳基的电荷转移。

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