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Crystal supramolecularity. Multiple phenyl embraces by [PPN](+) cations

机译:晶体超分子性。 [PPN](+)阳离子包含多个苯基

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Analysis of the 752 crystals in the Cambridge Structural Database containing [Ph3PNPPh3](+) ([PPN](+)) cations has revealed mutually attractive interactions between the cations leading to the formation of supramolecular motifs. The cation is flexible due to P-N-P bending: calculation of single point energies for an idealised [H3PNPH3](+) fragment show a flat energy well for the cation, with there being less than 1 kcal mol(-1) difference in energy between P-N-P angles of 130-180 degrees. The most populated conformation is that with a P-N-P angle in the range 140-145 degrees. The types of inter-cation interaction can be classified by a combination of the N-P ... P angle, the N-P ... P-N torsion angle and the four intermolecular P ... P distances between neighbouring cations. Interactions with an N-P ... P angle of greater than 125 degrees indicate a sixfold phenyl embrace (6PE), whilst those at more acute angles form expanded phenyl embraces with neighbouring cations either parallel (PEPE) or orthogonal (OEPE). The PEPE and OEPE are differentiated by torsion angle or intermolecular P ... P separations. Computation of the energies of attraction between the cations gives values in the ranges 7.0-10.5, 7.9-11.1 and 8.6-13.0 kcal mol(-1) for the 6PE, OEPE and PEPE respectively. The individual embraces combine to form zigzag chains of cations leading to either columnar or layered structures. The crystal lattice formed does not depend on anion size or charge. [References: 46]
机译:在包含[Ph3PNPPh3](+)([PPN](+))阳离子的剑桥结构数据库中对752个晶体的分析显示,阳离子之间的相互吸引相互作用导致超分子基序的形成。阳离子由于PNP弯曲而具有柔性:理想化[H3PNPH3](+)片段的单点能量计算显示出该阳离子的平整能良好,PNP之间的能量差小于1 kcal mol(-1) 130-180度的角度人口最多的构型是P-N-P角在140-145度范围内。阳离子间相互作用的类型可以通过N-P ... P角,N-P ... P-N扭转角和相邻阳离子之间的四个分子间P ... P距离的组合来分类。 N-P ... P角大于125度的相互作用表示六倍的苯基包围物(6PE),而更锐角的相互作用则形成与相邻阳离子平行(PEPE)或正交(OEPE)的扩展苯基包围物。 PEPE和OEPE通过扭转角或分子间P ... P分离来区分。阳离子之间的吸引能的计算得出分别对于6PE,OEPE和PEPE在7.0-10.5、7.9-11.1和8.6-13.0 kcal mol(-1)范围内的值。各个包围物结合形成阳离子之字形链,从而形成圆柱状或分层结构。形成的晶格不取决于阴离子的大小或电荷。 [参考:46]

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