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Modeling of the vibrational structure of the vibronic spectrum and an excited state of the dinaphthylethylene molecule

机译:振动光谱和二萘基乙烯分子的激发态建模

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The vibrational structure of the fluorescence spectrum and the structure of a dinaphthylethylene molecule in an excited state are calculated in the first and second approximations of the parametric method employed in the theory of vibronic spectra. The calculated spectra are in quantitative agreement with experimental data. The role of the angular parameters of the parametric method in the quantitative prediction of the vibrational structure of the fluorescence spectrum and changes observed in the geometry of the dinaphthylethylene molecule under excitation is determined. It is demonstrated that the polyene and acene parameters of the parametric method possess a high degree of transferability and that the models obtained are quite adequate to the real structures of the molecules under investigation. The proposed approach permits qualitative predictions and quantitative predictive calculations of the spectra of the studied molecules, as well as the spectral characteristics necessary for simulation of photochemical molecular transformations.
机译:荧光光谱的振动结构和处于激发态的二萘基乙烯分子的结构是根据振动光谱理论中使用的参数方法的第一近似和第二近似来计算的。计算的光谱与实验数据在数量上一致。确定参数方法的角度参数在荧光光谱振动结构的定量预测中以及在激发下二萘基乙烯分子的几何结构中观察到的变化中的作用。结果表明,该参量方法的多烯和并苯参数具有高度的可转移性,并且所获得的模型对于研究的分子的真实结构而言是相当合适的。所提出的方法允许对所研究分子的光谱进行定性预测和定量预测计算,以及模拟光化学分子转化所必需的光谱特征。

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