环戊烷红外光谱中起皱效应的局部模态研究。

E. Sibert, P. Bernath
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引用次数: 1

摘要

我们报告并解释了最近记录的高分辨率红外光谱,分别在-26.1°C和-50°C下气相环戊烷的CH2剪刀和CH延伸的基本原理。我们利用B3LYP/6-311++(d,p)和MP2/ cp - pvtz的理论水平,构建了拉伸和剪刀振动的局域模式哈密顿量,计算了频率、耦合和线性偶极子作为伪旋转角的函数,从而扩展了先前对这种分子的理论研究,已知它由于环褶皱而经历无障伪旋转。振动基集的对称性(D5h)导致了简单的振动/伪旋转哈密顿量,其解与中分辨率下的实验结果吻合较好,但与高分辨率光谱相比,缺少有趣的谱线分划。与剪刀运动相反,伪旋转导致CH拉伸的显著状态混合,其本身是费米耦合到剪刀泛音。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A local mode study of ring puckering effects in the infrared spectra of cyclopentane.
We report and interpret recently recorded high-resolution infrared spectra for the fundamentals of the CH2 scissors and CH stretches of gas phase cyclopentane at -26.1 and -50 °C, respectively. We extend previous theoretical studies of this molecule, which is known to undergo barrierless pseudorotation due to ring puckering, by constructing local mode Hamiltonians of the stretching and scissor vibrations for which the frequencies, couplings, and linear dipoles are calculated as functions of the pseudorotation angle using B3LYP/6-311++(d,p) and MP2/cc-pVTZ levels of theory. Symmetrization (D5h) of the vibrational basis sets leads to simple vibration/pseudorotation Hamiltonians whose solutions lead to good agreement with the experiment at medium resolution, but which miss interesting line fractionation when compared to the high-resolution spectra. In contrast to the scissor motion, pseudorotation leads to significant state mixing of the CH stretches, which themselves are Fermi coupled to the scissor overtones.
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