A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Division, Russian Academy of Sciences, Irkutsk 664033 Russia.
Institute of Chemical Technology and Engineering, Poznan University of Technology, 60-965 Poznan, Poland.
Molecules. 2023 Jan 5;28(2):536. doi: 10.3390/molecules28020536.
The energies of the O-H∙∙∙O=C intramolecular hydrogen bonds were compared quantitatively for the series of ortho-disubstituted benzenes and -isomers of olefins via a molecular tailoring approach. It was established that the hydrogen bond energy in the former series is significantly less than that in the latter one. The reason for lowering the hydrogen bond energy in the ortho-disubstituted benzenes compared to the -isomers of olefins is the decrease in the π-contribution to the total energy of the complex interaction, in which the hydrogen bond is enhanced by the resonance effect. By the example of the para- and meta-disubstituted benzenes, as well as -isomers of olefins, it was explicitly shown that the aromatic ring is a much poorer conductor of the resonance effect compared to the double bond. The hydrogen bond in the ortho-disubstituted benzenes has a lower energy than a typical resonance-assisted hydrogen bond because the aromatic moiety cannot properly assist the hydrogen bond with a resonance effect. Thus, a hydrogen bond on an aromatic platform should fall into a special category, namely an aromaticity-assisted hydrogen bond, which is closer by nature to a simple hydrogen bond rather than to a resonance-assisted one.
通过分子剪裁方法,比较了一系列邻位取代苯和烯烃的 -异构体中 O-H···O=C 分子内氢键的能量。结果表明,前一系列的氢键能明显小于后一系列。与烯烃的 -异构体相比,邻位取代苯中氢键能降低的原因是,氢键增强的共振效应使复合物相互作用的总能量中π 贡献减少。通过对对位和间位取代苯以及烯烃的 -异构体的例子,可以明确看出,与双键相比,芳环是共振效应的传输体差得多。邻位取代苯中的氢键能量低于典型的共振辅助氢键,因为芳基部分不能通过共振效应适当辅助氢键。因此,芳环上的氢键应属于特殊类别,即芳香性辅助氢键,它本质上更接近简单氢键,而不是共振辅助氢键。