首页> 外文期刊>Polish Journal of Chemistry >How Does the Bent-Walsh Rule Work in Molecules of para-Disubstituted Benzene Derivatives? The Case of para-Nitrophenol and para-Nitrophenolate
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How Does the Bent-Walsh Rule Work in Molecules of para-Disubstituted Benzene Derivatives? The Case of para-Nitrophenol and para-Nitrophenolate

机译:Bent-Walsh规则在对二取代苯衍生物分子中如何起作用?对硝基苯酚和对硝基苯酚酸酯的情况

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DFT (B3LYP/6-311+G**) optimization of nitrobenzene, 4-nitrophenol and 4-nitro-phenolate with the constraints for the rotating nitro group, with an interval of 15°, allowed us to show how the Bent-Walsh rule works in a whole range of variation of geometry in the vicinity of both substituted carbon atoms, C1 and C4. For scatter plots of geometry parameters in the vicinity of the C1 carbon atom the general view is in line with the Bent-Walsh rule. The relationship between the mean value of C1C2 and C1C6 bond lengths and the CO bond length has a negative slope, as expected. Two other dependences, this is the above mentioned bond lengths on C6-C1-C2 angle, have also rational slopes but present a relationship between two clusters, for 4-nitrophenol and 4-nitrophenolate, and within these clusters the slopes are opposite, due to the dominant resonance effect over the electronegativity one. In the case of scatter plots of geometry parameters in the vicinity of the C4 carbon atom the general view is again in line with the Bent-Walsh rule, but irregularities are of different shape: they result from strong interactions between oxygen atoms of the nitro group and both CH in ortho positions. These interactions become the strongest for planar conformation of the nitro group and decrease in strength with an increase of the rotation angle. This results in a perturbation in the resonance/electronegativity blend leading to substantial deviations from linear dependences of the CN bond length vs. the mean value of C4C3 and C4C5 bond lengths, and the CN bond length vs. C3-C4-C5 angle.
机译:DFT(B3LYP / 6-311 + G **)对硝基苯,4-硝基苯酚和4-硝基苯酚的DFT(B3LYP / 6-311 + G **)优化(受旋转硝基基团的限制,间隔为15°)使我们能够展示本特-沃尔什(Bent-Walsh)规则在两个取代碳原子C1和C4附近的整个几何变化范围内起作用。对于C1碳原子附近的几何参数的散点图,总体视图与Bent-Walsh规则一致。如所预期的,C1C2和C1C6键长的平均值与CO键长之间的关系具有负斜率。另外两个依赖关系,即上面提到的C6-C1-C2角上的键长,也具有合理的斜率,但在两个簇之间存在关系,对于4-硝基苯酚和4-硝基苯酚酸酯,在这些簇中,斜率相反,这是由于在电负性方面占主导地位的共振效应之一。在C4碳原子附近的几何参数散点图的情况下,一般视图再次符合Bent-Walsh规则,但不规则性具有不同的形状:它们是由硝基氧原子之间的强相互作用导致的并且两个CH都位于邻位。这些相互作用对于硝基的平面构型变得最强,并且随着旋转角度的增加强度降低。这导致共振/电负性混合中的扰动,导致与CN键长对C4C3和C4C5键长的平均值以及CN键长对C3-C4-C5角的平均值的线性相关性产生显着偏差。

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