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阳离子聚甲炔染料中的对称性破缺:第2部分。由溶剂反应场的热涨落解释电子吸收带的形状

Symmetry-Breaking in Cationic Polymethine Dyes: Part 2. Shape of Electronic Absorption Bands Explained by the Thermal Fluctuations of the Solvent Reaction Field.

作者信息

Masunov Artëm E, Anderson Dane, Freidzon Alexandra Ya, Bagaturyants Alexander A

机构信息

⊥Photochemistry Center RAS, ul. Novatorov 7a, Moscow, 119421, Russia.

#National Research Nuclear University MEPhI, Kashirskoye shosse 31, Moscow, 115409, Russia.

出版信息

J Phys Chem A. 2015 Jul 2;119(26):6807-15. doi: 10.1021/acs.jpca.5b03877. Epub 2015 Jun 18.

Abstract

The electronic absorption spectra of the symmetric cyanines exhibit dramatic dependence on the conjugated chain length: whereas short-chain homologues are characterized by the narrow and sharp absorption bands of high intensity, the long-chain homologues demonstrate very broad, structureless bands of low intensity. Spectra of the intermediate homologues combine both features. These broad bands are often explained using spontaneous symmetry-breaking and charge localization at one of the termini, and the combination of broad and sharp features was interpreted as coexistence of symmetric and asymmetric species in solution. These explanations were not supported by the first principle simulations until now. Here, we employ a combination of time-dependent density functional theory, a polarizable continuum model, and Franck-Condon (FC) approximation to predict the absorption line shapes for the series of 2-azaazulene and 1-methylpyridine-4-substituted polymethine dyes. To simulate inhomogeneous broadening by the solvent, the molecular structures are optimized in the presence of a finite electric field of various strengths. The calculated FC line shapes, averaged with the Boltzmann weights of different field strengths, reproduce the experimentally observed spectra closely. Although the polarizable continuum model accounts for the equilibrium solvent reaction field at absolute zero, the finite field accounts for the thermal fluctuations in the solvent, which break the symmetry of the solute molecule. This model of inhomogeneous broadening opens the possibility for computational studies of thermochromism. The choice of the global hybrid exchange-correlation functional SOGGA11-X, including 40% of the exact exchange, plays the critical role in the success of our model.

摘要

对称花青的电子吸收光谱对共轭链长度表现出显著依赖性

短链同系物的特征是高强度的窄而尖锐的吸收带,而长链同系物则表现出非常宽的、无结构的低强度吸收带。中间同系物的光谱兼具这两种特征。这些宽吸收带通常用自发对称性破缺和电荷在末端之一的局域化来解释,而宽峰和窄峰特征的组合被解释为溶液中对称和不对称物种的共存。到目前为止,这些解释尚未得到第一性原理模拟的支持。在这里,我们采用含时密度泛函理论、极化连续介质模型和弗兰克-康登(FC)近似相结合的方法,来预测一系列2-氮杂薁和1-甲基吡啶-4-取代聚甲川染料的吸收线形。为了模拟溶剂引起的非均匀展宽,在不同强度的有限电场存在下优化分子结构。用不同场强的玻尔兹曼权重平均计算得到的FC线形,能很好地重现实验观测光谱。虽然极化连续介质模型考虑了绝对零度下的平衡溶剂反应场,但有限场考虑了溶剂中的热涨落,它打破了溶质分子的对称性。这种非均匀展宽模型为热致变色的计算研究开辟了可能性。全局杂化交换相关泛函SOGGA11-X(包含40%的精确交换)的选择,对我们模型的成功起到了关键作用。

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