A rod- and tessellation-based comparative analysis of polymorphic and structurally-invariant molecular crystals: application to sulfathiazole and 2-benzyl-5-benzylidenecyclopentanones.

IF 1.3 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Noel W Thomas, David S Hughes
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引用次数: 0

Abstract

A rationalization of the alternative crystal structures adopted by a given molecular compound or by a set of substitutionally related molecular compounds is provided by reference to the five known polymorphs of sulfathiazole and 16 substituted 2-benzyl-5-benzylidene cyclopentanones (BBCPs), respectively. Two-dimensional (2D) packing fractions (ϕ2D) take space-group symmetry into account, with a clear demarcation of closed-packed zones (CPZ) and molecular junction zones (JZ) in all Z' = 1 structures. Representation of the molecules as two linked rods allows a concise treatment of conformation and rapid visualization of crystal packing. Combined with calculations of intermolecular potential energies, the rod method provides insight into the stabilization mechanisms of alternative polymorphs. In sulfathiazole, the primary factor is to obtain satisfactory hydrogen bonding, with close packing a secondary consideration. In BBCP derivatives, by comparison, close packing is the primary mechanism of stabilization. Whereas the 2D structures arising in CPZ can be analysed as tessellations of molecular-based cells, a method based on 2D Dirichlet cells is required for the JZ. These are calculated from the centroids of the molecular envelopes in high-symmetry planes. It is shown that these centroid coordinates, when combined with space-group symmetry and unit cell coordinates, provide a concise parameterization of all structures containing JZ. It is anticipated that this parameterization may be exploited to predict such crystal structures from powder diffraction data.

基于棒状和镶嵌状的多晶和结构不变分子晶体的比较分析:应用于磺胺噻唑和2-苄基-5-苄基环戊酮。
通过对已知的5种磺胺噻唑和16种取代的2-苄基-5-苄基环戊酮(BBCPs)多晶型的比较,对给定分子化合物或一组取代相关分子化合物所采用的可选晶体结构进行了合理化。二维(2D)填充分数(ϕ2D)考虑了空间-群对称性,在所有Z' = 1结构中都明确划分了封闭填充区(CPZ)和分子结区(JZ)。将分子表示为两个相连的棒,可以对构象进行简明处理,并对晶体填充进行快速可视化。结合分子间势能的计算,棒法提供了对可选多晶的稳定机制的深入了解。在磺胺噻唑中,主要因素是获得满意的氢键,其次考虑紧密的填料。相比之下,在BBCP衍生品中,紧密堆积是稳定的主要机制。尽管CPZ中产生的二维结构可以作为分子基细胞的镶嵌分析,但JZ需要基于二维狄利克雷细胞的方法。这些是根据高对称平面中分子包膜的质心计算出来的。结果表明,这些质心坐标与空间群对称和单元胞坐标相结合,提供了包含JZ的所有结构的简洁参数化。预计这种参数化方法可用于从粉末衍射数据中预测此类晶体结构。
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来源期刊
Acta crystallographica Section B, Structural science, crystal engineering and materials
Acta crystallographica Section B, Structural science, crystal engineering and materials CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
3.60
自引率
5.30%
发文量
0
期刊介绍: Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials publishes scientific articles related to the structural science of compounds and materials in the widest sense. Knowledge of the arrangements of atoms, including their temporal variations and dependencies on temperature and pressure, is often the key to understanding physical and chemical phenomena and is crucial for the design of new materials and supramolecular devices. Acta Crystallographica B is the forum for the publication of such contributions. Scientific developments based on experimental studies as well as those based on theoretical approaches, including crystal-structure prediction, structure-property relations and the use of databases of crystal structures, are published.
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