泛音
费米共振
化学
共振(粒子物理)
溶剂
红外线的
吡嗪
望远镜
溶剂效应
分析化学(期刊)
核磁共振
红外光谱学
原子物理学
谱线
立体化学
物理
凝聚态物理
有机化学
光学
量子力学
作者
Richard A. Nyquist,H. A. Fouchea,Gabriela Hoffman,Dennis L. Hasha
标识
DOI:10.1366/0003702914336462
摘要
Many lactones exhibit two significant bands in the carbonyl stretching region which result from Fermi resonance interaction between vC = O and a combination or overtone of a lower-lying fundamental (or fundamentals). However, for β-propiolactone, three significant bands in the carbonyl stretching region of the spectrum are observed. These bands result from vC = O in Fermi resonance between the combination tone v 6 + v 13 , A′ and 2 v 10 , A'. The extent of Fermi resonance interaction between vC = O and the combination and/or overtone is dependent upon the solvent system. Approximate unperturbed vC = O frequencies have been calculated, and these vC = O frequencies decrease in frequency in the solvent order n-hexane, carbon tetrachloride, and chloroform. The unperturbed vC = O frequencies were also calculated with the use of reported frequencies and band intensities for many other lactones, and the unperturbed vC = O frequencies decrease significantly as the amount of ring strain is reduced in the lactone structures. An equation, based on perturbation theory for obtaining approximate unperturbed vC = O frequencies for situations where three modes are in Fermi resonance, was developed and used to assign the unperturbed vC = O frequencies for β-propiolactone in various solvent systems. This method assumes that all or nearly all of the intensity in the three bands in Fermi resonance arises from the vC = O mode.
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