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氢键和溶剂极性对溶液中二(2-噻吩基)甲酮 C=O 伸缩振动的影响。

Effects of hydrogen bond and solvent polarity on the C=O stretching of bis(2-thienyl)ketone in solution.

机构信息

Department of Chemistry and State Key Laboratory of Advanced Textiles Materials and Manufacture Technology, MOE, Zhejiang Sci-Tech University, Hangzhou 310018, China.

出版信息

J Chem Phys. 2012 Mar 28;136(12):124509. doi: 10.1063/1.3697482.

Abstract

The optimized structural parameters, the absorption and the resonance Raman spectra have been investigated for the bis(2-thienyl)ketone in gas phase, in cyclohexane, methanol, and acetonitrile solvents by means of time dependent density functional theory calculations, the solvent electronic polarization effect on the solvation shift is examined and in well accordance with the calculation. The effect of increasing the polarity of the solvent is well represented by the polarizable continuum model, both for the absorption spectra and resonance Raman intensities. The Raman spectra of the C=O stretching mode, which is sensitive to the intermolecular interaction for bis(2-thienyl)ketone dissolved in solvents, were systematically studied. It was found that the hydrogen bond effect plays an important role in reducing the carbonyl stretching wavenumbers. The results of Raman shifts were interpreted through the dilution effect, solvation effects, and hydrogen bond-forming effects. Furthermore, the excitation profiles of several important Raman bands of bis(2-thienyl)ketone molecule in different solvents have been critically analyzed. The solvent effects on structural and symmetry properties of the molecule in S2 electronic state as well as the short-time photo relaxation dynamics have been discussed.

摘要

采用含时密度泛函理论方法研究了气相、环己烷、甲醇和乙腈溶剂中双(2-噻吩基)甲酮的优化结构参数、吸收光谱和共振拉曼光谱。考察了溶剂电子极化效应对溶剂化位移的影响,与计算结果非常吻合。极化连续模型很好地描述了溶剂极性增加对吸收光谱和共振拉曼强度的影响。对 C=O 伸缩振动模式的拉曼光谱进行了系统研究,该模式对溶解在溶剂中的双(2-噻吩基)甲酮的分子间相互作用很敏感。结果表明氢键效应对降低羰基伸缩频率起着重要作用。通过稀释效应、溶剂化效应和氢键形成效应解释了拉曼位移的结果。此外,还对不同溶剂中双(2-噻吩基)甲酮分子的几个重要拉曼带的激发谱进行了严格分析。讨论了分子在 S2 电子态下的结构和对称性质以及短时间光弛豫动力学的溶剂效应。

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