Virovets A V, Blatov V A, Shevchenko A P
Institute of Inorganic Chemistry of Siberian Branch of RAS, Ac. Lavrent'ev Pr. 3, Novosibirsk 630090, Russia.
Acta Crystallogr B. 2004 Jun;60(Pt 3):350-7. doi: 10.1107/S0108768104005051. Epub 2004 May 17.
Crystallochemical analysis methods based on the Voronoi-Dirichlet partition of crystal space are extended to supramolecular complexes of any complexity. The sizes and shapes of receptor cavities and substrate molecules are shown to be successfully estimated as volumes and the second moments of inertia of the corresponding molecular Voronoi-Dirichlet polyhedra. To predict which organic substrates can occupy the receptor cavity a mini-expert system known as MOLVOL was created, comprising a database on completely determined crystal structures of almost 60000 organic molecular compounds. Using the developed methods, volumes and shapes are assessed for cucurbit[n]uril receptors (n = 5-10) and their cavities. A number of organic and inorganic molecules are found which can optimally fit the cavities inside the cucurbit[5]uril and cucurbit[6]uril molecules.
基于晶体空间的沃罗诺伊 - 狄利克雷划分的晶体化学分析方法被扩展到任何复杂程度的超分子复合物。受体腔和底物分子的大小和形状被成功地估计为相应分子沃罗诺伊 - 狄利克雷多面体的体积和转动惯量的二阶矩。为了预测哪些有机底物可以占据受体腔,创建了一个名为MOLVOL的小型专家系统,它包含一个关于近60000种有机分子化合物完全确定的晶体结构的数据库。使用所开发的方法,评估了葫芦[n]脲受体(n = 5 - 10)及其腔的体积和形状。发现了许多有机和无机分子,它们能够最佳地适配葫芦[5]脲和葫芦[6]脲分子内部的腔。