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Hydrogen bonding and self-assembly in the crystal structures of ferrocenylmethanol derivatives having different phosphorus substituents on the ferrocene unit

机译:二茂铁单元上具有不同磷取代基的二茂铁基甲醇衍生物的晶体结构中的氢键和自组装

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Ferrocenylmethanol derivatives bearing a phosphorus substituent in position two of the ferrocene unit, rac-2-(diphenylphosphino)ferrocenylmethanol (3), rac-2-(diphenylphosphinoyl)ferrocenylmethanol (4), and rac-2-(diphenylthiophosphoryl)ferrocenylmethanol (5), have been synthesized and structurally characterized by single-crystal X-ray diffraction. While the overall molecular geometry does not differ significantly in the whole series, showing only differences in the arrangement at the phosphorus atom owing to a replacement of the lone electron pair (2, 3) with oxygen (4) and sulfur (5), and in the conformation of the hydroxylmethyl group, the compounds form different crystal packing patterns that result from a counterplay of hydrogen bonding of various types and non-polar interactions. Alcohol 3 associates into dimers by double O-H...O hydrogen bridges between disordered hydroxy groups of neighbouring molecules. The distribution of molecules in the crystal of 4 appears identical to that of 3. However, the structure of 4 comprises intermolecular O-H...O=P hydrogen bridges instead. The packing of phosphine sulfide 5 is different, featuring intramolecular O-H...S bridges. Although the molecular entities are involved in further interactions such as O-H...P and C-H...O hydrogen bonding, and pi-pi stacking interaction of the phenyl rings, which further propagate the molecular network, the principal force towards self-assembly always results in the formation of entropically favoured, closed cyclic systems. The solid state structure of the common precursor, rac-2(diphenylphosphino)ferrocenylmethyl acetate (2) shows only C-H...O intermolecular interactions due to the lack of a better hydrogen bond donor. [References: 54]
机译:在二茂铁单元的两个位置带有磷取代基的二茂铁甲醇衍生物:rac-2-(二苯基膦基)二茂铁甲醇(3),rac-2-(二苯基膦酰基)二茂铁甲醇(4)和rac-2-(二苯基硫代磷酰基)二茂铁甲醇(5) ,已经通过单晶X射线衍射合成并在结构上表征。虽然整个序列的整体分子几何形状没有显着差异,但由于用氧(4)和硫(5)取代了孤电子对(2,3),仅显示了磷原子的排列差异,并且在羟甲基的构象中,化合物形成不同的晶体堆积模式,这是由于各种类型的氢键和非极性相互作用的反作用导致的。醇3通过相邻分子的无序羟基之间的双O-H ... O氢桥缔合成二聚体。 4晶体中分子的分布看起来与3相同。但是,4的结构取而代之的是包含分子间的O-H ... O = P氢桥。硫化膦5的堆积不同,具有分子内O-H ... S桥。尽管分子实体还参与进一步的相互作用,例如OH ... P和CH ... O的氢键键合以及苯环的pi-pi堆积相互作用,这些相互作用进一步传播了分子网络,但自组装的主要作用力是总是导致形成熵偏爱的封闭循环系统。普通前体rac-2(二苯基膦基)二茂铁基乙酸甲酯(2)的固态结构由于缺乏更好的氢键供体而仅表现出C-H ... O的分子间相互作用。 [参考:54]

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