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Analysis of vapor-liquid-solid mechanism in Au-assisted GaAs nanowire growth

机译:金辅助砷化镓纳米线生长的气液固机理分析

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GaAs nanowires were grown by molecular-beam epitaxy on (111)B oriented surfaces, after the deposition of Au nanoparticles. Different growth durations and different growth terminations were tested. After the growth of the nanowires, the structure and the composition of the metallic particles were analyzed by transmission electron microscopy and energy dispersive x-ray spectroscopy. We identified three different metallic compounds: the hexagonal β'Au_7Ga_2 structure, the orthorhombic AuGa structure, and an almost pure Au face centered cubic structure. We explain how these different solid phases are related to the growth history of the samples. It is concluded that during the wire growth, the metallic particles are liquid, in agreement with the generally accepted vapor-liquid-solid mechanism. In addition, the analysis of the wire morphology indicates that Ga adatoms migrate along the wire sidewalk with a mean length of about 3 μm.
机译:在金纳米颗粒沉积之后,通过分子束外延在(111)B取向的表面上生长GaAs纳米线。测试了不同的生长持续时间和不同的生长终止。纳米线生长后,通过透射电子显微镜和能量色散X射线光谱分析金属颗粒的结构和组成。我们确定了三种不同的金属化合物:六角形的β'Au_7Ga_2结构,正交的AuGa结构和几乎纯的Au面心立方结构。我们解释了这些不同的固相与样品的生长历史之间的关系。结论是,在金属丝生长期间,金属颗粒是液体,这与公认的气液固机理一致。此外,金属丝形态分析表明,Ga原子沿着金属丝人行道迁移,平均长度约为3μm。

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