Huque Farah T, Platts James A
Department of Chemistry, Cardiff University, P.O. Box 912, Cardiff, UK CF10 3TB.
Org Biomol Chem. 2003 Apr 21;1(8):1419-24. doi: 10.1039/b300598d.
DFT calculations on a range of molecules containing intramolecular hydrogen bonds are reported, with a view to establishing how intramolecular hydrogen bonding affects their intermolecular interactions. It is shown that properties such as the energy of the intramolecular H-bond are unrelated to the ability to form external H-bonds. Conversely, several properties of complexes with a reference base correlate well with an experimental scale of H-bond acidity, and accurate predictive models are determined. A more detailed study, using electrostatic and overlap properties of complexes with a reference base, is used to predict the location, as well as strength, of hydrogen bond acidity. The effects of intramolecular hydrogen bonding on acidity can be seen not just on O-H and N-H, where acidity is greatly reduced, but also on certain C-H groups, which in some cases become the primary source of acidity.
本文报道了对一系列含有分子内氢键的分子进行的密度泛函理论(DFT)计算,旨在确定分子内氢键如何影响它们的分子间相互作用。结果表明,诸如分子内氢键能量等性质与形成外部氢键的能力无关。相反,与参考碱形成的配合物的几个性质与氢键酸度的实验标度有很好的相关性,并确定了准确的预测模型。通过使用与参考碱形成的配合物的静电和重叠性质进行更详细的研究,来预测氢键酸度的位置以及强度。分子内氢键对酸度的影响不仅体现在O-H和N-H上(酸度大幅降低),也体现在某些C-H基团上,在某些情况下,这些C-H基团成为酸度的主要来源。