Krygowski Tadeusz M, Szatyłowicz Halina
Department of Chemistry, Warsaw University, Poland.
J Phys Chem A. 2006 Jun 8;110(22):7232-6. doi: 10.1021/jp0605496.
Application of the Domenicano et al. method of estimating group electronegativity from angular geometry of the ring in monosubstituted benzene derivatives allowed us to find how the electronegativity of OH/O(-) groups in H-bonded complexes of phenol and phenolate depends on the nature and strength of H-bond. For complexes in which the OH group is only proton donating in the H-bond, a linear dependence of the estimated electronegativity on O...O(N) interatomic distance was found for experimental (CSD base retrieved) data. The following rule is observed: the weaker the H-bond is, the more electronegative the OH group is. If apart from this kind of interaction the oxygen is proton accepting, then an increase of electronegativity is observed. Modeling (B3LYP/6-311+G) the variation of the strength of the H-bond by the fluoride anion approaching the OH leads to qualitatively the same picture as the scatter plots for experimental data.
应用多梅尼卡诺等人从单取代苯衍生物环的角几何结构估计基团电负性的方法,使我们能够发现苯酚和酚盐的氢键复合物中OH/O(-)基团的电负性如何取决于氢键的性质和强度。对于OH基团仅在氢键中提供质子的复合物,实验(从CSD数据库检索)数据显示,估计的电负性与O...O(N)原子间距离呈线性关系。观察到以下规律:氢键越弱,OH基团的电负性越强。如果除了这种相互作用外,氧还接受质子,那么就会观察到电负性增加。通过氟离子接近OH来模拟(B3LYP/6-311+G)氢键强度的变化,得到的定性结果与实验数据的散点图相同。