Savchenkov Anton V, Serezhkin Viktor N
Department of Inorganic Chemistry, Samara National Research University, 1 Ak. Pavlova street, Samara, 443011, Russian Federation.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2018 Apr 1;74(Pt 2):137-147. doi: 10.1107/S2052520618001348. Epub 2018 Mar 16.
A method for clear visualization of the variation of noncovalent interactions in crystal structures of conformational polymorphs is developed and introduced. The first stage of the method establishes the characteristics of all, without exception, noncovalent interactions in all crystal structures under discussion. This is possible using a strict and objective method of construction of Voronoi-Dirichlet polyhedra within the framework of the stereoatomic model of crystal structures. The second stage of the method then involves plotting of diagrams, showing the relation between parameters characterizing interatomic interactions and chosen geometric parameters of molecules. Application of the title method to highly polymorphic systems of ROY and flufenamic acid allows several imperceptible features of real crystal structures to be revealed and determines the value of different types of interactions in their conformational polymorphs. The method is universal as it can be readily adapted to any system of crystal structures in which noncovalent interactions change as a function of any parameters. Employment of the title method along with quantum chemical calculations offers opportunities for the correlation of potential energy of crystalline materials with noncovalent interactions in their structures, which is a giant step forward towards a more complete understanding of the relationship between the structure and properties of compounds.
开发并介绍了一种用于清晰可视化构象多晶型物晶体结构中非共价相互作用变化的方法。该方法的第一阶段确定了所讨论的所有晶体结构中无一例外的所有非共价相互作用的特征。这可以通过在晶体结构的立体原子模型框架内构建严格且客观的沃罗诺伊 - 狄利克雷多面体方法来实现。该方法的第二阶段涉及绘制图表,展示表征原子间相互作用的参数与所选分子几何参数之间的关系。将该方法应用于高度多晶型的ROY和氟芬那酸系统,可以揭示真实晶体结构的几个难以察觉的特征,并确定其构象多晶型物中不同类型相互作用的价值。该方法具有通用性,因为它可以很容易地适用于任何晶体结构系统,其中非共价相互作用随任何参数而变化。将该方法与量子化学计算一起使用,为将晶体材料的势能与其结构中的非共价相互作用相关联提供了机会,这是朝着更全面理解化合物结构与性质之间关系迈出的一大步。