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包括杜申斯基效应和赫兹伯格-泰勒效应在内的有限温度下大分子光谱计算的有效方法:以卟啉的Qx带为例进行研究。

Effective method for the computation of optical spectra of large molecules at finite temperature including the Duschinsky and Herzberg-Teller effect: the Qx band of porphyrin as a case study.

作者信息

Santoro Fabrizio, Lami Alessandro, Improta Roberto, Bloino Julien, Barone Vincenzo

机构信息

Istituto per i Processi Chimico-Fisici-CNR, Area della Ricerca del CNR Via Moruzzi 1, I-56124 Pisa, Italy.

出版信息

J Chem Phys. 2008 Jun 14;128(22):224311. doi: 10.1063/1.2929846.

Abstract

The authors extend their recent method for the computation of vibrationally resolved optical spectra of large molecules, including both the Duschinsky rotation and the effect of finite temperature in the framework of the Franck-Condon (FC) approximation, to deal with the more general case of the Herzberg-Teller (HT) model, where also the linear dependence of the transition dipole moment on the nuclear coordinates is taken into account. This generalization allows us to investigate weak and vibronically allowed transitions by far extending the range of application of the method. The calculation of the spectra of sizable molecules is computationally demanding because of the huge number of final vibrational states that must be taken into account, and the inclusion of HT terms further increases the computational burden. The method presented here automatically selects the relevant vibronic contributions to the spectrum, independent of their frequency, and it is able to provide fully converged spectra with a modest computational requirement. The effectiveness of the method is illustrated by computing the HT absorption and fluorescence Q(x) spectra of free-base porphyrin both at T=0 K and at room temperature, performing for the first time an exact treatment of vibrations in harmonic approximation. Q(x) spectra are compared to experiments and FC/HT interferences are analyzed in detail.

摘要

作者将他们最近用于计算大分子振动分辨光谱的方法进行了扩展,该方法在弗兰克 - 康登(FC)近似框架内包括杜什金斯基转动和有限温度的影响,以处理更一般的赫兹伯格 - 特勒(HT)模型情况,其中还考虑了跃迁偶极矩对核坐标的线性依赖关系。这种推广使我们能够通过大幅扩展该方法的应用范围来研究弱的和振动电子允许的跃迁。由于必须考虑大量的最终振动态,计算相当大的分子的光谱在计算上要求很高,并且包含HT项进一步增加了计算负担。这里提出的方法自动选择对光谱有相关贡献的振动电子成分,而与它们的频率无关,并且能够以适度的计算要求提供完全收敛的光谱。通过计算在T = 0 K和室温下自由碱卟啉的HT吸收光谱和荧光Q(x)光谱来说明该方法的有效性,首次在简谐近似下对振动进行精确处理。将Q(x)光谱与实验进行比较,并详细分析FC/HT干涉。

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