Han Insung, Wang Kelly L, Cadotte Andrew T, Xi Zhucong, Parsamehr Hadi, Xiao Xianghui, Glotzer Sharon C, Shahani Ashwin J
Department of Materials Science and Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.
Department of Materials, University of Oxford, Parks Road, Oxford, OX 13PH, UK.
Nat Commun. 2021 Oct 11;12(1):5790. doi: 10.1038/s41467-021-26070-9.
Quasicrystals exhibit long-range order but lack translational symmetry. When grown as single crystals, they possess distinctive and unusual properties owing to the absence of grain boundaries. Unfortunately, conventional methods such as bulk crystal growth or thin film deposition only allow us to synthesize either polycrystalline quasicrystals or quasicrystals that are at most a few centimeters in size. Here, we reveal through real-time and 3D imaging the formation of a single decagonal quasicrystal arising from a hard collision between multiple growing quasicrystals in an Al-Co-Ni liquid. Through corresponding molecular dynamics simulations, we examine the underlying kinetics of quasicrystal coalescence and investigate the effects of initial misorientation between the growing quasicrystalline grains on the formation of grain boundaries. At small misorientation, coalescence occurs following rigid rotation that is facilitated by phasons. Our joint experimental-computational discovery paves the way toward fabrication of single, large-scale quasicrystals for novel applications.
准晶体呈现出长程有序但缺乏平移对称性。当生长为单晶时,由于不存在晶界,它们具有独特且不寻常的性质。不幸的是,诸如块状晶体生长或薄膜沉积等传统方法仅能让我们合成多晶准晶体或尺寸最大为几厘米的准晶体。在此,我们通过实时三维成像揭示了在铝 - 钴 - 镍液体中多个生长的准晶体之间的硬碰撞产生单个十边形准晶体的过程。通过相应的分子动力学模拟,我们研究了准晶体聚结的潜在动力学,并研究了生长的准晶颗粒之间初始取向差对晶界形成的影响。在小取向差时,聚结通过由相位子促进的刚性旋转发生。我们联合实验与计算的发现为制造用于新应用的单个大规模准晶体铺平了道路。