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C₆H₅X(X = H,D,F,Cl,CH₃,CF₃)型芳香族分子中的分子内振动能量转移。

Intramolecular vibrational energy redistribution in aromatic molecules of type C₆H₅X (X = H, D, F, Cl, CH₃, CF₃).

机构信息

Institut für Physikalische Chemie der Universität Göttingen, Tammannstrasse 6, D-37077 Göttingen, Germany.

出版信息

J Phys Chem A. 2010 Nov 4;114(43):11522-8. doi: 10.1021/jp105417a.

Abstract

Femtosecond IR pump UV probe spectroscopy was employed in the gas phase to study intramolecular vibrational energy redistribution (IVR) in benzene and five monosubstituted derivatives thereof. After selective excitation of the first overtone of the ring CH-stretch vibration, all molecules showed the same two-step redistribution dynamics characteristic for nonstatistical IVR. The nature of the substituent influences mainly the second, slower IVR component. The presence of an internal rotor does not alter the redistribution rate or pathway compared to that of a monatomic substituent of equal mass. Coupling order model calculations reflect the experimental trends well if the polyatomic substituents are regarded as decoupled from the intra-ring dynamics and modeled as point masses.

摘要

飞秒红外泵浦紫外探针光谱技术被应用于气相中,以研究苯及其五种单取代衍生物的分子内振动能量再分配(IVR)。在选择性激发环 CH 伸缩振动的第一泛频后,所有分子都表现出相同的两步再分配动力学,这是一种非统计 IVR 的特征。取代基的性质主要影响较慢的第二步 IVR 成分。与等质量的单原子取代基相比,内部转子的存在不会改变再分配速率或途径。如果将多原子取代基视为与内环动力学解耦并建模为质点,则耦合顺序模型计算很好地反映了实验趋势。

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