Direct Observation of Growth and Stability of Al-Cu-Fe Quasicrystal Thin Films

H. Parsamehr, Chun-Liang Yang, Wei-Ting Liu, Shi-Wei Chen, Shou-Yi Chang, Lih-Juann Chen, A. Tsai, C. Lai
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引用次数: 9

Abstract

Abstract Al-Cu-Fe based quasicrystal thin films exhibit unique surface and mechanical properties. To better understand the formation of the quasicrystal thin films, we observe direct growth of quasicrystals, prepared in a multilayer Al-Cu-Fe thin films with subsequent heat treatment, by in-situ synchrotron x-ray diffraction and in-situ transmission electron microscopy during heating and cooling. Using these two methods, we show that the ternary phase is more thermodynamically stable compared to the binary phases at temperature higher than 470 °C during the heating process, and quasicrystal formation occurs during the cooling process, specifically at 660 °C, after the sample has reached a liquid state. To distinguish quasicrystal from approximant crystals in the obtained thin film samples, we use high resolution x-ray diffraction to analyze the sample at room temperature. We reveal that the peak broadening increases monotonically along the twofold, threefold, and fivefold high-symmetry directions with the physical scattering vector but does not have systematic dependence on the phason momentum, which suggests that the thin film sample is indeed a quasicrystal instead of approximant crystals and it is almost free of phason strain. Our study provides a complete understanding of the growth mechanism for thin film Al-Cu-Fe quasicrystals, which is of particular importance for developing versatile applications of quasicrystal thin films.
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Al-Cu-Fe准晶薄膜生长与稳定性的直接观察
摘要:Al-Cu-Fe基准晶薄膜具有独特的表面和力学性能。为了更好地理解准晶薄膜的形成,我们利用原位同步x射线衍射和原位透射电镜观察了加热和冷却过程中制备的多层Al-Cu-Fe薄膜中准晶的直接生长。通过这两种方法,我们发现在加热过程中,当温度高于470 °C时,三元相比二元相更具热力学稳定性,而在冷却过程中,特别是在660 °C时,样品达到液态后,准晶形成。为了区分得到的薄膜样品中的准晶体和近似晶体,我们在室温下使用高分辨率x射线衍射分析样品。我们发现,峰展宽沿物理散射矢量的两倍、三倍和五倍高对称方向单调增加,但不依赖于相动量,这表明薄膜样品确实是准晶体而不是近似晶体,并且几乎不存在相应变。我们的研究提供了对Al-Cu-Fe准晶体薄膜生长机制的完整理解,这对于开发准晶体薄膜的多用途应用具有特别重要的意义。
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