Ors Taylan, Takakura Hiroyuki, Abe Eiji, Steurer Walter
Laboratory of Crystallography, ETH Zurich, Vladimir-Prelog-Weg 5, CH-8093 Zurich, Switzerland.
Division of Applied Physics, Faculty of Engineering, Hokkaido University, Sapporo 060-8628, Japan.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2014 Apr;70(Pt 2):315-30. doi: 10.1107/S2052520614001115. Epub 2014 Mar 17.
A single-crystal X-ray diffraction structure analysis of decagonal Zn-Mg-Dy, a Frank-Kasper-type quasicrystal, was performed using the higher-dimensional approach. For this first Frank-Kasper (F-K) decagonal quasicrystal studied so far, significant differences to the decagonal Al-TM-based (TM: transition metal) phases were found. A new type of twofold occupation domain is located on certain edge centers of the five-dimensional unit cell. The structure can be described in terms of a two-cluster model based on a decagonal cluster (∼ 23 Å diameter) arranged on the vertices of a pentagon-Penrose tiling (PPT) and a star-like cluster covering the remaining space. This model is used for the five-dimensional refinements, which converged to an R value of 0.126. The arrangement of clusters is significantly disordered as indicated by high-angle annular dark-field scanning transmission electron microscopy (HAADF-STEM). In order to check the structure and stability at higher temperatures, in-situ high-temperature (HT) single-crystal X-ray diffraction experiments were conducted at 598 and 648 K (i.e. slightly below the decomposition temperature). The structure does not change significantly, however, the best quasiperiodic order is found at 598 K. The implication of these results on the stabilization mechanism of quasicrystals is discussed.
采用高维方法对Frank-Kasper型准晶体十边形Zn-Mg-Dy进行了单晶X射线衍射结构分析。对于迄今为止研究的首个Frank-Kasper(F-K)十边形准晶体,发现其与基于十边形Al-TM(TM:过渡金属)相存在显著差异。一种新型的双重占据畴位于五维晶胞的某些棱心位置。该结构可以用基于一个排列在五角形彭罗斯镶嵌(PPT)顶点上的十边形簇(直径约23 Å)和一个覆盖其余空间的星状簇的双簇模型来描述。该模型用于五维精修,收敛后的R值为0.126。如高角度环形暗场扫描透射电子显微镜(HAADF-STEM)所示,簇的排列明显无序。为了检验在更高温度下的结构和稳定性,在598 K和648 K(即略低于分解温度)下进行了原位高温(HT)单晶X射线衍射实验。结构没有显著变化,然而,在598 K时发现了最佳的准周期序。讨论了这些结果对准晶体稳定机制的影响。