Zubatyuk Roman I, Shishkin Oleg V, Gorb Leonid, Leszczynski Jerzy
STC Institute for Single Crystals, National Academy of Sciences of Ukraine, 60 Lenina Avenue, Kharkiv 61001, Ukraine.
J Phys Chem A. 2009 Mar 26;113(12):2943-52. doi: 10.1021/jp8100859.
Tautomerism and resonance-assisted hydrogen bonding have been analyzed on the basis of the results of ab initio calculations at the MP2/AUG-cc-pVDZ level of theory for the series of molecules containing different heterocycles connected with resonance spacer and containing different exocyclic proton donor/acceptor atoms. It is demonstrated that the position of tautomeric equilibrium is controlled mainly by two factors: aromaticity of heterocycle, which could be different for two tautomers, and relative proton affinities of two heteroatoms forming a hydrogen bond. Replacement of exocyclic proton donor/acceptor atom results in change of an aromaticity degree of heterocycle leading to alteration of relative stability of tautomers. Comparison of structure and properties of E and Z conformers of molecules demonstrates resonance-assisted character of intramolecular hydrogen bond. Application of the NBO theory reveals that the pi-component of the electron density within resonant spacer plays the primary role for determination of characteristics of hydrogen bond while sigma-skeleton only reflects the pi-polarization. An analysis of strength of intramolecular hydrogen bond using geometrical, energetic, and AIM and NBO parameters indicates that the homonuclear N...H-N hydrogen bond is considerably weaker than heteronuclear N...H-O and N...H-S hydrogen bonds in the case of the XH tautomers.
基于在MP2/AUG-cc-pVDZ理论水平下的从头算计算结果,对包含与共振间隔基相连的不同杂环且含有不同环外质子供体/受体原子的一系列分子进行了互变异构和共振辅助氢键分析。结果表明,互变异构平衡的位置主要受两个因素控制:杂环的芳香性,两种互变异构体的芳香性可能不同;以及形成氢键的两个杂原子的相对质子亲和力。环外质子供体/受体原子的替换会导致杂环芳香性程度的改变,从而导致互变异构体相对稳定性的改变。分子的E和Z构象异构体的结构和性质比较表明了分子内氢键的共振辅助特征。NBO理论的应用表明,共振间隔基内电子密度的π分量在确定氢键特征方面起主要作用,而σ骨架仅反映π极化。使用几何、能量、AIM和NBO参数对分子内氢键强度进行分析表明,在XH互变异构体的情况下,同核N...H-N氢键比异核N...H-O和N...H-S氢键弱得多。