首页> 外文期刊>Crystallography reports >Simulation of Self-Organization Processes in Crystal-Forming Systems: Supramolecular Cyclic R6 Cluster Precursors and Self-Assembly of TeO2-TEL (Tellurite) and TeO2-PAR (Paratellurite) Structures
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Simulation of Self-Organization Processes in Crystal-Forming Systems: Supramolecular Cyclic R6 Cluster Precursors and Self-Assembly of TeO2-TEL (Tellurite) and TeO2-PAR (Paratellurite) Structures

机译:晶体形成系统中自组织过程的模拟:超分子环状R6团簇前体以及TeO2-TEL(碲铁矿)和TeO2-PAR(方铁矿)结构的自组装

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The supramolecular chemistry of oxides of sp elements (SO2, SeO2, and TeO2) is considered. The self-assembly of TeO2-TEL (Tellurite) and TeO2-PAR (Paratellurite) crystal structures is simulated. Methods of combinatorial and topological analysis (TOPOS program package) are applied which are based on constructing a basis 3D network of the structure in the form of a graph, the sites of which correspond to the positions of centroids of TeO2 molecules and the edges characterize bonds between them. The topological type of the basis 2D network in the TeO2-TEL structure corresponds to graphite (C-GRA), while in the TeO2-PAR structure the basis network corresponds to the 3D diamond network (C-DIA). A nanocluster precursor of cyclic type (R6) composed of six covalently bound TeO2 molecules (chair conformation) is established for both structures. The desymmetrization of the cyclic structure of the R6 cluster in TeO2-PAR is related to the formation of Te-Te bonds with lengths of 3.824 and 4.062 angstrom. The symmetry and topology code of the processes of self-assembly of 3D structures from nanocluster precursors is completely reconstructed into the form "primary chain -> microlayer -> microframework." In both structures R6 clusters form 2D packings with a coordination number of 6. The cluster self-assembly model explains the specific features of the morphogenesis of TeO2-TEL and TeO2-PAR (phases with low and high crystallization temperatures, respectively): platelike shape, perfect cleavage in the (110) plane, and preferred growth in the primar-chain direction [100] in the former case and growth in the direction of the primary [001] axis with the preferred formation of tetragonal prism faces (110) in the latter case.
机译:考虑了sp元素(SO2,SeO2和TeO2)的氧化物的超分子化学。模拟了TeO2-TEL(碲铁矿)和TeO2-PAR(方铁矿)晶体结构的自组装。应用组合和拓扑分析方法(TOPOS程序包),该方法基于以图形形式构建结构的基础3D网络,其位置对应于TeO2分子质心的位置,并且边缘表征键它们之间。在TeO2-TEL结构中,基础2D网络的拓扑类型对应于石墨(C-GRA),而在TeO2-PAR结构中,基础网络对应于3D菱形网络(C-DIA)。建立了由六个共价键合的TeO2分子(椅子构象)组成的环状(R6)纳米簇前体。 TeO2-PAR中R6团簇的环状结构的去对称化与长度为3.824和4.062埃的Te-Te键的形成有关。由纳米簇前体自组装3D结构的过程的对称性和拓扑代码被完全重建为“主链->微层->微框架”的形式。在这两种结构中,R6团簇形成6配位数为2的堆积。团簇自组装模型解释了TeO2-TEL和TeO2-PAR(分别具有低结晶温度和高结晶温度的相)的形态发生的特定特征:板状在前一种情况下,在(110)平面上发生了完美的切割,并且在原链方向[100]上出现了优先增长,在[001]轴方向上出现了优先增长,并在其中优选形成了四棱柱面(110)。后一种情况。

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