Janjić Goran V, Ninković Dragan B, Zarić Snezana D
ICTM, University of Belgrade, Njegoševa 12, Belgrade 11000, Serbia.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2013 Aug;69(Pt 4):389-94. doi: 10.1107/S2052519213013961. Epub 2013 Jul 18.
Parallel stacking interactions between pyridines in crystal structures and the influence of hydrogen bonding and supramolecular structures in crystals on the geometries of interactions were studied by analyzing data from the Cambridge Structural Database (CSD). In the CSD 66 contacts of pyridines have a parallel orientation of molecules and most of these pyridines simultaneously form hydrogen bonds (44 contacts). The geometries of stacked pyridines observed in crystal structures were compared with the geometries obtained by calculations and explained by supramolecular structures in crystals. The results show that the mean perpendicular distance (R) between pyridine rings with (3.48 Å) and without hydrogen bonds (3.62 Å) is larger than that calculated, because of the influence of supramolecular structures in crystals. The pyridines with hydrogen bonds show a pronounced preference for offsets of 1.25-1.75 Å, close to the position of the calculated minimum (1.80 Å). However, stacking interactions of pyridines without hydrogen bonds do not adopt values at or close to that of the calculated offset. This is because stacking interactions of pyridines without hydrogen bonds are less strong, and they are more susceptible to the influence of supramolecular structures in crystals. These results show that hydrogen bonding and supramolecular structures have an important influence on the geometries of stacked pyridines in crystals.
通过分析剑桥晶体结构数据库(CSD)中的数据,研究了晶体结构中吡啶之间的平行堆积相互作用以及晶体中的氢键和超分子结构对相互作用几何形状的影响。在CSD中,66个吡啶接触具有分子的平行取向,并且这些吡啶中的大多数同时形成氢键(44个接触)。将晶体结构中观察到的堆积吡啶的几何形状与计算得到的几何形状进行比较,并由晶体中的超分子结构进行解释。结果表明,由于晶体中超分子结构的影响,有氢键的吡啶环之间的平均垂直距离(R)(3.48 Å)和无氢键的吡啶环之间的平均垂直距离(3.62 Å)大于计算值。有氢键的吡啶明显倾向于1.25 - 1.75 Å的偏移,接近计算最小值(1.80 Å)的位置。然而,无氢键的吡啶的堆积相互作用没有采用或接近计算偏移值。这是因为无氢键的吡啶的堆积相互作用较弱,并且它们更容易受到晶体中超分子结构的影响。这些结果表明,氢键和超分子结构对晶体中堆积吡啶的几何形状有重要影响。