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Nano Atom Clusters and Their Long-range Quasiperiodic Arrangements in the Al-Ni-Ru Decagonal Quasicrystal

机译:Al-Ni-Ru十方准晶体中的纳米原子簇及其远距离准周期排列

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The structural features of nano-sized atom clusters and their long-rang arrangement in the Al-Ni-Ru decagonal quasicrystal with 1.6 nm periodicity have been studied and compared with those in the Al-Pd-Mn decagonal quasicrystal on the basis of electron microscopy. From the perpendicular-space analysis of the tiling obtained in a wide region, we conclude that long-range arrangement of atom clusters in the Al-Ni-Ru decagonal quasicrystal with 1.6 nm periodicity can form a Penrose-tiling-like quasiperiodic structure which is almost free of linear phase strain. In contrast, the tiling structure of the Al-Pd-Mn decagonal quasicrystal contains heavy phason strain. Our results clearly show that atom clusters formed in the Al-Ni-Ru decagonal quasicrystals and their linkage manner are completely different from those in the Al-Pd-Mn decagonal quasicrystal.
机译:在电子显微镜的基础上,研究了周期为1.6 nm的Al-Ni-Ru十方准晶体中纳米原子簇的结构特征及其远距离排列,并与Al-Pd-Mn十方准晶体中的纳米原子团进行了比较。 。从在宽范围内获得的平铺的垂直空间分析,我们得出结论,周期为1.6 nm的Al-Ni-Ru十边形准晶体中的原子簇的长距离排列可以形成Penrose-tiling-like拟周期结构。几乎没有线性相位应变。相比之下,Al-Pd-Mn十边形准晶体的平铺结构包含重相子应变。我们的结果清楚地表明,在Al-Ni-Ru十方准晶体中形成的原子团簇和它们的键合方式与在Al-Pd-Mn十方准晶体中的原子团完全不同。

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