首页> 外文期刊>The Journal of Chemical Physics >Picosecond IR-UV pump-probe spectroscopic study of the dynamics of the vibrational relaxation of jet-cooled phenol. I. Intramolecular vibrational energy redistribution of the OH and CH stretching vibrations of bare phenol
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Picosecond IR-UV pump-probe spectroscopic study of the dynamics of the vibrational relaxation of jet-cooled phenol. I. Intramolecular vibrational energy redistribution of the OH and CH stretching vibrations of bare phenol

机译:皮秒红外-紫外泵浦探针光谱研究射流冷却苯酚的振动弛豫动力学。一,裸苯酚的OH和CH拉伸振动的分子内振动能再分布

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The intramolecular vibrational energy redistribution (IVR) of the OH stretching vibration of jet-cooled phenol-h(6) (C6H5OH) and phenol-d(5) (C6D5OH) in the electronic ground state has been investigated by picosecond time-resolved IR-UV pump-probe spectroscopy. The OH stretching vibration of phenol was excited with a picosecond IR laser pulse, and the subsequent temporal evolutions of the initially excited level and the redistributed ones due to the IVR were observed by multiphoton ionization detection with a picosecond UV pulse. The IVR lifetime for the OH stretch vibration of phenol-h(6) was determined to be 14 ps, while that of the OH stretch for phenol-d(5) was found to be 80 ps. This remarkable change of the IVR rate constant upon the dueteration of the CH groups strongly suggests that the "doorway states" for the IVR from the OH level would be the vibrational states involving the CH stretching modes. We also investigated the IVR rate of the CH stretching vibration for phenol-h(6). It was found that the IVR lifetime of the CH stretch is less than 5 ps. The fast IVR is described by the strong anharmonic resonance of the CH stretch with many other combinations or overtone bands. (C) 2004 American Institute of Physics. [References: 51]
机译:通过皮秒时间分辨红外技术研究了电子基态中喷冷苯酚-h(6)(C6H5OH)和苯酚-d(5)(C6D5OH)的OH拉伸振动的分子内振动能重新分布(IVR) -紫外泵浦探针光谱法。用皮秒红外激光脉冲激发苯酚的OH拉伸振动,并通过皮秒紫外脉冲的多光子电离检测,观察到初始激发能级的随后时间变化以及由IVR引起的再分布能级的时间变化。苯酚-h(6)的OH拉伸振动的IVR寿命确定为14 ps,而苯酚-d(5)的OH拉伸振动的IVR寿命为80 ps。 IVR速率常数在CH基团重合后的这种显着变化强烈表明,IVR从OH水平开始的“门道状态”将是涉及CH拉伸模式的振动状态。我们还研究了苯酚-h(6)的CH拉伸振动的IVR速率。发现CH段的IVR寿命小于5ps。快速IVR通过CH拉伸与许多其他组合或泛音带的强非谐共振来描述。 (C)2004年美国物理研究所。 [参考:51]

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