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Structural information from methyl internal rotation spectroscopy

机译:甲基内旋光谱学的结构信息

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The fundamental quantum mechanics, group theory, and spectroscopy of methyl torsional structure accompanying electronic transitions is presented. The origin of barriers to internal rotation and the interaction of the methyl with the pi system via hyperconjugation are discussed. Because of the relationship between the methyl barrier and the pi system, measurement of the CH3 properties provides structural information about the molecule. In para'-substituted p-methyl-t-stilbenes, barriers in the S-1 state show a strong dependence on the substituent, substituent conformation, and involvement of the substituent in hydrogen bonding interaction. The methyl torsional barrier reflects these changes despite the distance of the substitution site, 10 atoms away.
机译:介绍了伴随电子跃迁的甲基扭转结构的基本量子力学,群论和光谱学。讨论了内部旋转障碍的起源以及甲基与π系统通过超共轭作用的相互作用。由于甲基屏障和pi系统之间的关系,因此对CH3性质的测量提供了有关分子的结构信息。在对位取代的对甲基叔丁基苯甲酸酯中,处于S-1状态的势垒显示出对取代基,取代基构象的强烈依赖性,并且该取代基参与氢键相互作用。尽管取代位点相距10个原子,但甲基扭转势垒仍反映了这些变化。

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