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Theoretical study of intermolecular interactions in crystalline arene–perhaloarene adducts in terms of the electron density

机译:在电子密度方面结晶芳烃 - 亲卤素加合物分子间相互作用的理论研究

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The effect of halogen substitution on the intermolecular interactions and crystal packing of arene–perhaloarene adducts was studied by means of theoretical methods. Solid state density functional theory geometry optimizations with the LAPW methodology were carried out for the hexafluorobenzene–pyrene, hexafluorobenzene–triphenylene, hexachlorobenzene–pyrene and hexachlorobenzene–triphenylene complexes using as starting points the X-ray crystal geometries measured in our laboratory. The structures of hexachlorobenzene–pyrene and hexachlorobenzene–triphenylene are reported for the first time. Using the tools of the quantum theory of atoms in molecules, the following six types of intermolecular interactions were identified: π?π, π?X, π?H, X?H, H?H and X?X where X = F or Cl. The electron density and related properties at the bond critical points and the NCI index allow to classify them as closed-shell weak interactions. The alternating regions of positive and negative electrostatic potential of chlorine and a larger deformation density than the one observed in fluorine, allow to understand the stronger pairwise interactions involving Cl. The cohesion energies were also computed, being more negative those for the molecular crystals involving hexachlorobenzene. This observation was rationalized in terms of the properties of the electron density at the intermolecular contacts. It was also found that dispersion is the most stabilizing long-range contribution to the dimerization energies of several related model systems. These results suggest that the properties of the electron density and the energetic stabilizing contributions provide complementary viewpoints for the understanding of the intermolecular interactions in these crystals.
机译:通过理论方法研究了卤素取代对芳烃 - 亲卤素加合物分子间相互作用和晶体包装的影响。用作在我们实验室中测量的X射线晶体几何形状,对六氟苯 - 芘,六氟苯 - 三苯基,六氯苯 - 芘和六氯苯 - 三苯基复合物进行了固态密度的几何优化。首次报道了六氯苯磺酸芘和三氯苯基 - 三苯基的结构。使用分子中原子原子的量子理论的工具,鉴定了以下六种分子间相互作用:παπ,π≤x,π≤h,x≤h,h?h和x≤x≤x≤x≤x= f或CL。债券关键点和NCI指数处的电子密度和相关性能允许将它们分类为闭合壳弱相互作用。氯的正面和负静电电位的交替区域和较大的变形密度比在氟中观察到的较大的变形密度,允许了解涉及Cl的更强的成对相互作用。还计算了凝聚体能量,对于涉及六氯苯的分子晶体,更负面。在分子间触点处的电子密度的性质方面,该观察结果是合理化的。还发现分散是对几种相关模型系统的二聚化能量的最稳定的远程贡献。这些结果表明,电子密度和能量稳定贡献的性质提供了了解这些晶体中的分子间相互作用的互补观点。

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