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Real-Time Dynamical Observation of Lattice Induced Nucleation and Growth in Interfacial Solid-Solid Phase Transitions

机译:界面固相转变中晶格诱导形核和生长的实时动态观察

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摘要

Uncovering dynamical processes of lattice induced epitaxial growth of nanocrystal on the support is critical to understanding crystallization, solid-phase epitaxial growth, Oswald ripening process, and advanced nano fabrication, all of which are linked to different important applications in the materials field. Here, we conduct direct in situ atomic-scale dynamical observation of segregated Bi layers on SrBi2Ta2O9 support under low dose electron irradiation to explore the nucleation and growth from an initial disordered solid state to a stable faceted crystal by using aberration corrected transmission electron microscopy. We provide, for the first time, atomic-scale insights into the initial prenucleation stage of lattice induced interfacial nucleation, size-dependent crystalline fluctuation, and stepped-growth stage of the formed nanocrystal on the oxide support at the atomic scale. We identify a critical diameter in forming a stable faceted configuration and find interestingly that the stable nanocrystal presents a size-dependent coalescence mechanism. These results offer an atomic scale view into the dynamic process at solid/solid interfaces, which has implications for thin film growth and advanced nanofabrication.
机译:在载体上揭示晶格诱导的纳米晶体外延生长的动力学过程对于理解结晶,固相外延生长,奥斯瓦尔德成熟过程和先进的纳米制造至关重要,所有这些都与材料领域的不同重要应用相关。在这里,我们进行低剂量电子辐照下SrBi2Ta2O9载体上偏析Bi层的直接原位原子级动力学观察,以通过像差校正透射电子显微镜探索从初始无序固态到稳定刻面晶体的成核和生长。我们首次提供原子尺度的洞察力,以了解晶格诱导的界面成核的初始预成核阶段,尺寸相关的晶体涨落以及氧化物支撑体上形成的纳米晶体在原子尺度上的逐步生长阶段。我们确定了形成稳定的多面构型的临界直径,有趣的是,稳定的纳米晶体呈现出尺寸依赖性的聚结机制。这些结果为固体/固体界面上的动态过程提供了原子尺度的观点,这对薄膜生长和先进的纳米加工具有影响。

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