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Properties, aromaticity, and substituents effects in poly nitro-and amino-substituted benzenes

机译:聚硝基和氨基取代的苯的性质,芳香性和取代基效应

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摘要

Geometrical parameters, aromaticity, and conformational flexibility of the set of polysubstituted benzenes with different number and position of nitro and amino groups were calculated at the MP2/cc-pvdz level of theory. The key factor for structural and energetic changes has been identified. This is related to the presence of nitro and amino groups in vicinal positions that forms strong intramolecular resonance-assisted hydrogen bonds with a binding energy of 7-14 kcal/mol. Increasing number of such bonds facilitates a cooperative effect, inducing notable changes in molecular geometry (particularly increasing bond alternation within H _2N-C-C-NO _2 fragment and planarization of amino group), drastic increasing of conformational flexibility and decreasing of aromaticity. In spite of well-known π-electron effects of nitro and amino substituents, influence of their push-pull interaction through aromatic moiety is negligible compared to the effect of the hydrogen bonding. That results in great difference of the ortho-isomers as compared to meta-and para-isomers.
机译:在理论上的MP2 / cc-pvdz水平上计算了具有不同数量和位置的硝基和氨基的多取代苯的几何参数,芳香性和构象柔性。已经确定了结构和能量变化的关键因素。这与在邻位存在硝基和氨基有关,硝基和氨基形成牢固的分子内共振辅助氢键,结合能为7-14 kcal / mol。这种键数目的增加促进了协同作用,引起分子几何结构的显着变化(特别是H _2N-C-C-NO _2片段内的键交替增加和氨基的平面化),构象柔性的急剧增加和芳香性的降低。尽管硝基和氨基取代基有众所周知的π电子效应,但是与氢键合效应相比,通过芳族基团进行推挽相互作用的影响可忽略不计。与间位和对位异构体相比,这导致邻位异构体的巨大差异。

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