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苯乙炔-醇配合物的红外-紫外双共振光谱研究。烷基诱导的氢键转换。

IR-UV double resonance spectroscopic investigation of phenylacetylene-alcohol complexes. Alkyl group induced hydrogen bond switching.

作者信息

Singh Prashant Chandra, Patwari G Naresh

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076 India.

出版信息

J Phys Chem A. 2008 Jun 12;112(23):5121-5. doi: 10.1021/jp800968g. Epub 2008 May 21.

Abstract

The electronic transitions of phenylacetylene complexes with water and trifluoroethanol are shifted to the blue, while the corresponding transitions for methanol and ethanol complexes are shifted to the red relative to the phenylacetylene monomer. Fluorescence dip infrared (FDIR) spectra in the O-H stretching region indicate that, in all the cases, phenylacetylene is acting as a hydrogen bond acceptor to the alcohols. The FDIR spectrum in the acetylenic C-H stretching region shows Fermi resonance bands for the bare phenylacetylene, which act as a sensitive tool to probe the intermolecular structures. The FDIR spectra reveal that water and trifluoroethanol interact with the pi electron density of the acetylene C-C triple bond, while methanol and ethanol interact with the pi electron density of the benzene ring. It can be inferred that the hydrogen bonding acceptor site on phenylacetylene switches from the acetylene pi to the benzene pi with lowering in the partial charge on the hydrogen atom of the OH group. The most significant finding is that the intermolecular structures of water and methanol complexes are notably distinct, which, to the best of our knowledge, this is first such observation in the case of complexes of substituted benzenes.

摘要

苯乙炔与水和三氟乙醇形成的配合物的电子跃迁向蓝光方向移动,而甲醇和乙醇配合物的相应跃迁相对于苯乙炔单体则向红光方向移动。O-H伸缩区域的荧光 dip 红外(FDIR)光谱表明,在所有情况下,苯乙炔都作为醇类的氢键受体。炔烃C-H伸缩区域的FDIR光谱显示了裸苯乙炔的费米共振带,它是探测分子间结构的灵敏工具。FDIR光谱表明,水和三氟乙醇与乙炔C-C三键的π电子密度相互作用,而甲醇和乙醇与苯环的π电子密度相互作用。可以推断,随着OH基团氢原子上部分电荷的降低,苯乙炔上的氢键受体位点从乙炔π转换为苯π。最显著的发现是水和甲醇配合物的分子间结构明显不同,据我们所知,这是在取代苯配合物的情况下首次观察到这种情况。

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