Zubatyuk Roman I, Volovenko Yulian M, Shishkin Oleg V, Gorb Leonid, Leszczynski Jerzy
STC "Institute for Single Crystals" NAS of Ukraine, 60 Lenina ave., Kharkiv, Ukraine.
J Org Chem. 2007 Feb 2;72(3):725-35. doi: 10.1021/jo0616411.
The contribution of aromaticity and intramolecular hydrogen bonding to relative stability, for a set of (1H-azahetero-2-ylidene)-acetaldehyde and 2-azahetero-2-yl-ethanol tautomeric pairs, has been investigated by means of quantum chemical DFT and ab initio methods up to the MP4(SDTQ)/AUG-cc-pVDZ and MP2/AUG-cc-pVTZ levels of theory. It is found that the relative energy of the tautomers is governed by the change in the degree of heterocycle aromaticity upon intramolecular hydrogen transfer. An analysis of geometrical parameters of a hydrogen-bonded system reveals a clear relationship between the aromaticity of the heterocycle, the conjugation in a resonant spacer, and the strengths of the intramolecular hydrogen bonds. This allows the conclusion to be drawn that intramolecular N-H...O and O-H...N hydrogen bonds formed are found to be resonance-assisted and their strength is dependent on the pi-donating/accepting properties of the heterocycle. On the basis of the results of the calculations, a simple model describing the mechanism of resonance assistance of hydrogen bonding has been suggested.
借助量子化学密度泛函理论(DFT)和从头算方法,在高达MP4(SDTQ)/AUG-cc-pVDZ和MP2/AUG-cc-pVTZ理论水平下,研究了一组(1H-氮杂-2-亚基)乙醛和2-氮杂-2-基乙醇互变异构体中芳香性和分子内氢键对相对稳定性的贡献。研究发现,互变异构体的相对能量受分子内氢转移时杂环芳香性程度变化的支配。对氢键体系几何参数的分析揭示了杂环芳香性、共振间隔中的共轭作用以及分子内氢键强度之间的明确关系。由此可以得出结论,所形成的分子内N-H...O和O-H...N氢键是共振辅助的,其强度取决于杂环的π供体/受体性质。基于计算结果,提出了一个描述氢键共振辅助机制的简单模型。