首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Substituent effects in nitro derivatives of carbazoles investigated by comparison of low-temperature crystallographic studies with density functional theory (DFT) calculations
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Substituent effects in nitro derivatives of carbazoles investigated by comparison of low-temperature crystallographic studies with density functional theory (DFT) calculations

机译:通过低温结晶学研究与密度泛函理论(DFT)计算的比较研究了咔唑的硝基衍生物中的取代基效应

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The crystal structure of 9H-carbazole, C12H9N, (I), has been redetermined at low temperature for use as a reference structure in a comparative study with the structures of 1-nitro-9H-carbazole, C12H8N2O2, (II), and 9-nitrocarbazole, C12H8N2O2, (III). The molecule of (I) has crystallographically imposed mirror symmetry (Z′ = 0.5). All three solid-state structures are slightly nonplanar, the dihedral angles between the planes of the arene and pyrrole rings ranging from 0.40?(7)° in (III) to 1.82?(18)° in (II). Nevertheless, a density functional theory (DFT) study predicts completely planar conformations for the isolated molecules. To estimate the influence of nitro-group substitution on aromaticity, the HOMA (harmonic oscillator model of aromaticity) descriptor of π-electron delocalization has been calculated in each case. The HOMA indices for the isolated and solid-state molecules are relatively consistent and decrease in value for aromatic rings that are substituted with a π-electron-withdrawing nitro group. Substitution of the arene ring influences the π-electron delocalization in the ring only weakly, showing strong resistance to a perturbation of its geometry, contrary to what is observed for nitro substitution of the five-membered heterocyclic pyrrole ring. In (II), the molecules are arranged in near-planar dimers connected to each other by strong N—H...O hydrogen bonds that stack parallel to the crystallographic b axis. A similar stacking arrangement is observed in (III), although here the stacked structure is formed by stand-alone molecules.
机译:已经在低温下重新确定了9H-咔唑C12H9N的晶体结构,以用作与1-硝基-9H-咔唑,C12H8N2O2,(II)和9的结构进行比较研究的参考结构-硝基咔唑,C 12 H 8 N 2 O 2(III)。 (I)的分子在晶体学上具有镜对称性(Z'= 0.5)。这三个固态结构都略微不平坦,芳烃和吡咯环的平面之间的二面角在(III)中为0.40?(7)°到(II)中为1.82?(18)°。然而,密度泛函理论(DFT)研究预测了分离出的分子的完全平面构象。为了估计硝基取代对芳香性的影响,已经计算了每种情况下π电子离域的HOMA(芳香性谐波振荡器模型)描述符。分离出的固态分子的HOMA指数相对一致,并且被π电子吸收性硝基取代的芳香环的HOMA指数降低。芳烃环的取代仅微弱地影响该环中的π电子离域,显示出对其几何结构扰动的强抵抗力,这与对五元杂环吡咯环的硝基取代观察到的相反。在(II)中,分子布置在通过与晶体学b轴平行堆叠的强NH-O氢键相互连接的近平面二聚体中。在(III)中观察到了类似的堆叠排列,尽管此处的堆叠结构是由独立分子形成的。

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