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Three-dimensional hydrogen-bonded frameworks in organic crystals: a topological study

机译:有机晶体中的三维氢键构架:拓扑研究

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1551 homomolecular single hydrogen-bonded frameworks in organic crystals have been classified into 148 topological types of three-periodic nets. Different representations of hydrogenbonded frameworks as nets of molecular centroids, edge or ring nets are discussed. To study the influence of hydrogen bonds on the topology of molecular packings, 42 270 molecular crystals without hydrogen bonds have been considered. The topologies of molecular packings are found to be independent of hydrogen bonding. Analysis of 231 homomolecular frameworks composed of crystallographically different molecules shows that molecules not related by symmetry tend to form the same hydrogen-bond pattern. The relations between net topological types, space-group symmetry of crystals, site symmetry and point-group symmetry of molecules are discussed. As a result, a set of rules for the crystal design of molecular frameworks is proposed.
机译:1551年有机晶体中的单分子氢键结合构架已被分类为148种拓扑结构的三周期网。讨论了氢键骨架作为分子质心网,边缘网或环网的不同表示形式。为了研究氢键对分子堆积拓扑的影响,已经考虑了42 270个没有氢键的分子晶体。发现分子堆积的拓扑独立于氢键。对由晶体学上不同的分子组成的231个同分子骨架的分析表明,不对称的分子趋于形成相同的氢键模式。讨论了净拓扑类型,晶体的空间群对称性,分子的部位对称性和点群对称性之间的关系。结果,提出了一套用于分子框架的晶体设计的规则。

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