发色团
半经典物理学
化学
发射光谱
吸收光谱法
谱线
振动光谱学
原子电子跃迁
谱线形状
弗兰克-康登原则
吸收(声学)
自由度(物理和化学)
分子电子跃迁
激发态
分子物理学
原子物理学
计算化学
物理
光化学
量子力学
量子
光学
作者
Maira D’Alessandro,Massimiliano Aschi,Claudia Mazzuca,Antonio Palleschi,Andrea Amadei
摘要
In this paper we describe in detail a general and efficient methodology, based on the perturbed matrix method and molecular dynamics simulations, to model UV-Vis absorption and emission spectra including vibrational and conformational effects. The basic approximation used is to consider all the chromophore atomic coordinates as semiclassical degrees of freedom, hence allowing the calculation of the complete spectral signal by using the electronic vertical transitions as obtained at each possible chromophore configuration, thus including the contributions of vibrations and conformational transitions into the spectrum. As shown for the model system utilized in this paper, solvated 1-phenyl-naphthalene, such an approximation can be rather accurate to reproduce the absorption and emission spectral line shape and properties when, as it often occurs, the vertical vibronic transition largely overlaps the other non-negligible vibronic transitions.
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