首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Deciphering the hydrogen‐bonding scheme in the crystal structure of triphenylmethanol: a tribute to George Ferguson and co‐workers
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Deciphering the hydrogen‐bonding scheme in the crystal structure of triphenylmethanol: a tribute to George Ferguson and co‐workers

机译:在三苯基甲醇的晶体结构中解入氢键方案:对乔治·弗格森和同事的致敬

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The crystal structure of triphenylmethanol, C 19 H 16 O, has been redetermined using data collected at 295 and 153?K, and is compared to the model published by Ferguson et al. over 25 years ago [Ferguson et al. (1992). Acta Cryst . C 48 , 1272–1275] and that published by Serrano‐González et al. , using neutron and X‐ray diffraction data [Serrano‐González et al. (1999). J. Phys. Chem. B , 103 , 6215–6223]. As predicted by these authors, the hydroxy groups are involved in weak intermolecular hydrogen bonds in the crystal, forming tetrahedral tetramers based on the two independent molecules in the asymmetric unit, one of which is placed on the threefold symmetry axis of the R space group. However, the reliable determination of the hydroxy H‐atom positions is difficult to achieve, for two reasons. Firstly, a positional disorder affects the full asymmetric unit, which is split over two sets of positions, with occupancy factors of ca 0.74 and 0.26. Secondly, all hydroxy H atoms are further disordered, either by symmetry, or through a positional disorder in the case of parts placed in general positions. We show that the correct description of the hydrogen‐bonding scheme is possible only if diffraction data are collected at low temperature. The prochiral character of the hydrogen‐bonded tetrameric supramolecular clusters leads to enantiomorphic three‐dimensional graphs in each tetramer. The crystal is thus a racemic mixture of sup S and sup R motifs, consistent with the centrosymmetric nature of the R space group.
机译:使用在295和153Ω·k上收集的数据已经预先确定了三苯基甲醇C 19 H 16 O的晶体结构,并与Ferguson等人发表的模型进行了比较。超过25年前[Ferguson等人。 (1992)。 acta晶体。 C 48,1272-1275]并由Serrano-González等。 ,使用中子和X射线衍射数据[Serrano-González等。 (1999)。 J. phys。化学。 B,103,6215-6223]。如这些作者预测的,羟基涉及晶体中的弱分子间氢键,基于非对称单元中的两个独立分子形成四面体四聚体,其中一个置于R空间组的三倍对称轴上。然而,由于两个原因,难以实现羟基H-原子位置的可靠测定。首先,位置紊乱影响全部不对称单元,其分为两组位置,具有CA 0.74和0.26的占用因子。其次,所有羟基H原子通过对称性进一步混乱,或者通过在普通位置放置的部件的情况下通过位置紊乱。我们表明,只有在低温下收集衍射数据时,才能正确描述氢键方案。氢键键的四聚体超分子簇的促幼儿特征导致每个四聚体中的对映体三维图。因此,晶体是SUP S和SUP R基序的外消旋混合物,与R空间组的离心性质一致。

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