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Structural building principles of complex face-centered cubic intermetallics

机译:复杂面心立方金属间化合物的结构构造原理

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Fundamental structural building principles are discussed for all 56 known intermetallic phases with approximately 400 or more atoms per unit cell and space-group symmetry F4?3, Fd3?, Fm3?m or Fm3?c. Despite fundamental differences in chemical composition, bonding and electronic band structure, their complex crystal structures show striking similarities indicating common building principles. We demonstrate that the structure-determining elements are flat and puckered atomic {110} layers stacked with periodicities 2p. The atoms on this set of layers, which intersect each other, form pentagon face-sharing endohedral fullerene-like clusters arranged in a face-centered cubic packing (f.c.c.). Due to their topological layer structure, all these crystal structures can be described as (p × p × p) = p 3-fold superstructures of a common basic structure of the double-diamond type. The parameter p, with p = 3, 4, 7 or 11, is determined by the number of layers per repeat unit and the type of cluster packing, which in turn are controlled by chemical composition.
机译:讨论了所有56个已知的金属间相的基本结构构造原理,每个金属相具有约400个或更多的原子,并且空间组对称性为F4?3,Fd3?,Fm3?m或Fm3?c。尽管化学成分,键合和电子能带结构存在根本性差异,但它们复杂的晶体结构却显示出惊人的相似性,表明了共同的构造原理。我们证明了结构确定元素是平坦的且具有周期性2p的褶皱的原子{110}层。这组层上的原子相互交叉,形成五角形的面共享内面富勒烯类簇,排列成面心立方堆积(f.c.c.)。由于它们的拓扑层结构,所有这些晶体结构都可以描述为(p×p×p)= p双金刚石型常见基本结构的3倍超结构。 p分别为3、4、7或11的参数p由每个重复单元的层数和簇堆积的类型决定,而簇的类型又由化学组成控制。

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