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氰基苯酚的超快振动光谱学。

Ultrafast vibrational spectroscopy of cyanophenols.

机构信息

Department of Chemistry, Korea University, Seoul 136-701, Korea.

出版信息

J Phys Chem A. 2010 Mar 4;114(8):2757-67. doi: 10.1021/jp908696k.

Abstract

Aromatic compounds with electron-donating or -accepting substituents exhibit interesting resonance effects on a variety of chemical reactivities and optical properties. To understand such effects and the possible relationship between vibrational energy dissipation pathways and resonance structures of aromatic compounds, we studied ortho-, meta-, and para-substituted cyanophenols and their anionic forms in methanol by using time- and frequency-resolved pump-probe and two-dimensional IR spectroscopy, where the nitrile group acts as an IR probe. From the measured transient spectra and singular-value decomposition analyses, we found that there is a combination band whose frequency is very close to that of the nitrile stretch mode. Due to the difference in the lifetimes of these two mode excited states, the transient pump-probe spectra commonly show notable blue-shifting behaviors in time. Comparing the vibrational lifetimes of neutral cyanophenols and cyanophenoxide anions in methanol and carrying out quantum mechanical/molecular mechanical molecular dynamics simulations to study hydrogen-bonding dynamics, we found that the vibrational energy of the nitrile stretch mode initially relaxes to intramolecular degrees of freedom instead of solvent modes. Also, the vibrational anharmonic frequency shifts, intrinsic lifetimes, and bandwidths of the nitrile stretch mode and the combination mode in these molecular systems are fully characterized, and their relationships with resonance structures are discussed. It is believed that the present work sheds light on the intrinsic vibrational relaxation process of the nitrile stretch mode in cyanophenols, even in the case when their IR spectra are congested by the spectrally overlapping combination bands, and the resonance effects of aromatic compounds on vibrational dynamics and relaxation processes.

摘要

具有供电子或吸电子取代基的芳香族化合物在各种化学反应性和光学性质上表现出有趣的共振效应。为了理解这些效应以及芳香族化合物的振动能量耗散途径与共振结构之间的可能关系,我们使用时间和频率分辨泵浦探测和二维红外光谱法研究了甲醇中的邻位、间位和对位取代氰苯酚及其阴离子形式,其中腈基作为红外探针。从测量的瞬态光谱和奇异值分解分析中,我们发现存在一个组合带,其频率非常接近腈基伸缩模式的频率。由于这两个模式激发态的寿命不同,瞬态泵浦探测光谱通常在时间上表现出明显的蓝移行为。比较甲醇中中性氰苯酚和氰苯酚阴离子的振动寿命,并进行量子力学/分子力学分子动力学模拟以研究氢键动力学,我们发现腈基伸缩模式的振动能最初松弛到分子内自由度,而不是溶剂模式。此外,还全面表征了这些分子体系中腈基伸缩模式和组合模式的振动非谐频率位移、固有寿命和带宽,以及它们与共振结构的关系。相信本工作阐明了氰苯酚中腈基伸缩模式的固有振动弛豫过程,即使在其红外光谱因光谱重叠的组合带而变得拥挤的情况下,以及芳香族化合物对振动动力学和弛豫过程的共振效应。

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