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p-、m-和 o-二氟苯的 S1→S0 荧光激发光谱的从头算激发态和 Franck-Condon 模拟。

Excited state ab initio and Franck-Condon simulation of S1 → S0 fluorescence excitation spectra of p-, m-, and o-difluorobenzenes.

机构信息

College of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, People's Republic of China.

出版信息

J Phys Chem A. 2011 Dec 8;115(48):14022-33. doi: 10.1021/jp207051g. Epub 2011 Nov 10.

DOI:10.1021/jp207051g
PMID:22017741
Abstract

Although difluorobenzenes (DFBs) are well-known organic molecules to understand the electronic structure and spectroscopy of benzene and its derivatives, few theoretical investigations have been performed to simulate their fine spectra and assign their vibrational bands. In this work, the fluorescence excitation (FEX) spectra of the first excited singlet states for three DFBs molecules (para-, meta- and ortho-difluorobenzene) were simulated by the Franck-Condon calculations with the displaced harmonic oscillator approximation plus the distorted correction. The calculated results indicated that the spectral profiles of three DFBs are primarily described by the Franck-Condon progression of their totally symmetric vibrational modes. Specifically, it is found that modes v(3) and v(5) of para-DFB, v(8) and v(9) of meta-DFB, and ortho-DFB play the most important roles in the fluorescence spectra. By taking into account the contributions of the distorted effect, we could assign most of the dominant overtones from the nontotally symmetric vibrational modes, and the results agree well with the experimental assignments. Some inferred and unassigned vibrational transitions in experiment were confirmed according to the present calculated results. In addition, in the simulated fluorescence spectra, we tentatively assigned several combination bands with relative moderate intensity and weak vibrational lines which appeared in the experimental observations but the corresponding assignments were not given. The present work reproduced satisfactorily the experimental FEX spectra of p-, m-, and o-DFBs derivatives and provided a useful method to simulate the FEX spectra of dihalogenated benzene molecules.

摘要

尽管二氟苯(DFB)是研究苯及其衍生物电子结构和光谱的知名有机分子,但很少有理论研究对其精细光谱进行模拟并对其振动带进行分配。在这项工作中,通过Franck-Condon 计算结合位移谐振子近似加畸变修正,模拟了三种 DFB 分子(对、间、邻二氟苯)的第一激发单重态的荧光激发(FEX)光谱。计算结果表明,三种 DFB 的光谱轮廓主要由它们完全对称振动模式的 Franck-Condon 推进描述。具体来说,发现对二氟苯的 v(3)和 v(5)模式、间二氟苯的 v(8)和 v(9)模式以及邻二氟苯在荧光光谱中起着最重要的作用。考虑到畸变效应的贡献,我们可以对来自非完全对称振动模式的大部分主要泛音进行分配,并且结果与实验分配很好地吻合。根据目前的计算结果,证实了实验中推断出的和未分配的一些振动跃迁。此外,在模拟的荧光光谱中,我们暂定分配了几个组合带,它们具有中等强度和弱的振动线,这些在实验观察中出现,但未给出相应的分配。本工作令人满意地再现了 p-、m-和 o-DFB 衍生物的实验 FEX 光谱,并提供了一种模拟二卤代苯分子 FEX 光谱的有用方法。

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