Highly-perfect decagonal quasicrystalline Al64Cu22Co14with non-centrosymmetry

准周期函数 准晶 电子衍射 相位子 星团(航天器) 结晶学 扫描透射电子显微镜 衍射 区域轴 彭罗斯瓷砖 材料科学 透射电子显微镜 高分辨率透射电子显微镜 凝聚态物理 反射高能电子衍射 化学 物理 光学 纳米技术 程序设计语言 计算机科学
作者
Satoshi Taniguchi,Eiji Abe
出处
期刊:Philosophical Magazine [Taylor & Francis]
卷期号:88 (13-15): 1949-1958 被引量:39
标识
DOI:10.1080/14786430802035683
摘要

The structure of a decagonal quasicrystal of Al64Cu22Co14, which was a single-grain specimen (a few mm in size) grown by slow-cooling from a melt and subsequently annealed at 1073 K, was investigated using electron diffraction and scanning transmission electron microscopy (STEM). Electron diffraction patterns of the Al64Cu22Co14 revealed a large number of sharp reflections that indicate a good long-range quasiperiodic order, and convergent-beam electron diffraction (CBED) analysis identified the space group of the decagonal Al64Cu22Co14 as being non-centrosymmetric . Atomic-resolution Z-contrast STEM imaging showed that the structure can be described based on a fivefold-symmetric decagonal cluster 2 nm across, most of which is found to be located at ideal positions in the pentagonal Penrose tiling with significantly less phason disorders. Therefore, to our knowledge, the present decagonal Al64Cu22Co14 provides one of the best quasiperiodic ordered structures among those belonging to non-centrosymmetric . Further details of atomic configurations within the fivefold-symmetric cluster were also examined using ultrahigh-resolution Z-contrast STEM with an aberration-corrector for the objective lens. This clearly revealed both the Al and Cu/Co sites at resolution close to 1 Å. Atomic arrangements within the cluster are found to be fairly well described based on the fivefold-symmetry cluster that exists in the W-(AlCoNi) approximant crystal, except for the atomistic disorders localized around the cluster centres.
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