Sirindil Abdullah, Kobold Raphael, Mompiou Frédéric, Lartigue-Korinek Sylvie, Perriere Loic, Patriarche Gilles, Quiquandon Marianne, Gratias Denis
CNRS-Laboratoire de Métallurgie de l'UMR 8247, IRCP Chimie-ParisTech, 11 rue Pierre et Marie Curie, 75005 Paris, France.
Institute of Material Physics in Space, German Aerospace Center (DLR) Linder Höhe, 51170 Cologne, Germany.
Acta Crystallogr A Found Adv. 2018 Nov 1;74(Pt 6):647-658. doi: 10.1107/S2053273318011439. Epub 2018 Oct 4.
Some specific structures of intermetallic alloys, like approximants of quasicrystals, have their unit cells and most of their atoms located on a periodic fraction of the nodes of a unique {\bb Z}-module [a set of the irrational projections of the nodes of a (N > 3-dimensional) lattice]. Those hidden internal symmetries generate possible new kinds of defects like coherent twins, translation defects and so-called module dislocations that have already been discussed elsewhere [Quiquandon et al. (2016). Acta Cryst. A72, 55-61; Sirindil et al. (2017). Acta Cryst. A73, 427-437]. Presented here are electron microscopy observations of the orthorhombic phase NiZr - and its low-temperature monoclinic variant - which reveal the existence of such defects based on the underlying {\bb Z}-module generated by the five vertices of the regular pentagon. New high-resolution electron microscopy (HREM) and scanning transmission electron microscopy high-angle annular dark-field (STEM-HAADF) observations demonstrate the agreement between the geometrical description of the structure in five dimensions and the experimental observations of fivefold twins and translation defects.
一些金属间合金的特定结构,如准晶体的近似物,其晶胞以及大部分原子位于一个独特的(\mathbb{Z})-模(一组((N>3)维)晶格节点的无理投影)节点的周期性部分上。那些隐藏的内部对称性产生了可能的新型缺陷,如相干孪晶、平移缺陷以及所谓的模位错,这些在其他地方已经讨论过[Quiquandon等人(2016年)。《晶体学报》A72,55 - 61;Sirindil等人(2017年)。《晶体学报》A73,427 - 437]。这里展示的是正交相NiZr及其低温单斜变体的电子显微镜观察结果,这些观察揭示了基于由正五边形的五个顶点生成的潜在(\mathbb{Z})-模存在此类缺陷。新的高分辨率电子显微镜(HREM)和扫描透射电子显微镜高角度环形暗场(STEM - HAADF)观察结果表明,五维结构的几何描述与五次孪晶和平移缺陷的实验观察结果一致。