首页> 外文期刊>The Journal of Chemical Physics >Franck-Condon factors perturbed by damped harmonic oscillators: Solvent enhanced X~1Ag ? A~1B_(1u) absorption and fluorescence spectra of perylene
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Franck-Condon factors perturbed by damped harmonic oscillators: Solvent enhanced X~1Ag ? A~1B_(1u) absorption and fluorescence spectra of perylene

机译:受阻尼谐波振荡器干扰的Franck-Condon因子:溶剂增强的X〜1Ag? per的A〜1B_(1u)吸收光谱和荧光光谱

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摘要

Damped harmonic oscillators are utilized to calculate Franck-Condon factors within displaced harmonic oscillator approximation. This is practically done by scaling unperturbed Hessian matrix that represents local modes of force constants for molecule in gaseous phase, and then by diagonalizing perturbed Hessian matrix it results in direct modification of Huang-Rhys factors which represent normal modes of solute molecule perturbed by solvent environment. Scaling parameters are empirically introduced for simulating absorption and fluorescence spectra of an isolated solute molecule in solution. The present method is especially useful for simulating vibronic spectra of polycyclic aromatic hydrocarbon molecules in which hydrogen atom vibrations in solution can be scaled equally, namely the same scaling factor being applied to all hydrogen atoms in polycyclic aromatic hydrocarbons. The present method is demonstrated in simulating solvent enhanced X~1Ag?A~1B_(1u) absorption and fluorescence spectra of perylene (medium-sized polycyclic aromatic hydrocarbon) in benzene solution. It is found that one of six active normal modes v_(10) is actually responsible to the solvent enhancement of spectra observed in experiment. Simulations from all functionals (TD) B3LYP, (TD) B3LYP35, (TD) B3LYP50, and (TD) B3LYP100 draw the same conclusion. Hence, the present method is able to adequately reproduce experimental absorption and fluorescence spectra in both gas and solution phases.
机译:阻尼谐波振荡器用于计算位移谐波振荡器近似值内的弗兰克-康登因子。实际上,这是通过缩放表示气相中分子的局部力常数的无扰动的Hessian矩阵进行缩放,然后通过对扰动的Hessian矩阵进行对角线化,直接导致Huang-Rhys因子的直接修饰,这些因子表示受溶剂环境扰动的溶质分子的正常模式。根据经验引入缩放参数,以模拟溶液中分离的溶质分子的吸收和荧光光谱。本方法对于模拟多环芳族烃分子的振动光谱特别有用,在多环芳族烃分子中,溶液中的氢原子振动可以均等地缩放,即对多环芳族烃中的所有氢原子都应用相同的缩放因子。通过模拟溶剂增强的enhanced(中型多环芳烃)在苯溶液中的溶剂增强的X〜1Ag?A〜1B_(1u)吸收和荧光光谱证明了本方法。发现六个活动法线模式v_(10)之一实际上是对实验中观察到的光谱的溶剂增强负责。从所有功能(TD)B3LYP,(TD)B3LYP35,(TD)B3LYP50和(TD)B3LYP100进行的仿真得出相同的结论。因此,本方法能够在气相和溶液相中充分再现实验吸收和荧光光谱。

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