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首页> 外文期刊>Structural Chemistry >From symmetry-labeled quotient graphs of crystal nets to coordination sequences: Algebraic tools for a combinatorial analysis of crystal structures
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From symmetry-labeled quotient graphs of crystal nets to coordination sequences: Algebraic tools for a combinatorial analysis of crystal structures

机译:从对称标记的商晶图到协调序列:用于晶体结构组合分析的代数工具

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The combinatorial topology of crystal structures may be described by finite graphs, called symmetrylabeled quotient graphs or voltage graphs, with edges labeled by symmetry operations from their space group. These symmetry operations themselves generate a space group which is generally a non-trivial subgroup of the crystal space group. The method is an extension of the socalled vector method, where translation symmetries are used as vector labels (voltages) for the edges of the graph. Non-translational symmetry operations may be used as voltages if they act freely on the net underlying the crystal structure. This extension provides a significant reduction of the size of the quotient graph. A few uninodal and binodal nets are examined as illustrations. In particular, various uninodal nets appear to be isomorphic to Cayley color graphs of space group. As an application, the full coordination sequence of the diamond net is determined.
机译:晶体结构的组合拓扑可以由称为对称标记的商图或电压图的有限图来描述,其边缘由来自其空间组的对称操作来标记。这些对称操作本身生成一个空间组,该空间组通常是晶体空间组的一个非平凡的子组。该方法是所谓矢量方法的扩展,其中平移对称性用作图形边缘的矢量标记(电压)。如果非平移对称操作自由地作用在晶体结构下面的网络上,则它们可以用作电压。这种扩展大大减少了商图的大小。考察了一些单节网和双脚网作为例子。特别是,各种单节网络似乎与空间群的Cayley彩色图同构。作为应用,可以确定钻石网的完整配位顺序。

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