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Structural characterization of MOVPE-grown GaAs/AlGaAs core-shell nanowires through transmission electron microscopy

机译:通过透射电子显微镜对MOVPE生长的GaAs / AlGaAs核壳纳米线的结构表征

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We investigated by means of transmission electron microscopy (TEM) GaAs-AlGaAs core-shell nanowires (NWs) grown by Au-catalyzed metalorganic vapor phase epitaxy under As-rich vapor conditions. The structural analysis reveals that the NWs exhibit zincblende phase only and a very low density of twin defects along the NW trunk; a higher amount of twins around the NW axial (growth) direction occur instead within a tapered region closeby the NW tip. We correlate this finding to the Al-rich composition of the tapered region, as deduced by scanning-TEM (STEM) mass contrast analysis, this region being the effect of residual Au-assisted self-assembly of the material during shell overgrowth. In addition a few percent of NWs show branching during their growth, and we determine the crystal properties and defects of branched NWs. We propose that this phenomenon may be induced by Au nanoparticle instabilities during NW growth and further demonstrate that twin defects occur at the NW branching points.
机译:我们通过透射电子显微镜(TEM)在富砷蒸气条件下通过Au催化的金属有机气相外延生长的GaAs-AlGaAs核壳纳米线(NWs)进行了研究。结构分析表明,NW仅表现出闪锌矿相,且沿NW主干的双缺陷密度非常低。相反,在NW轴向(生长)方向上出现了较多的孪晶,而不是在NW尖端附近的锥形区域内。我们将此发现与锥形区域的富铝成分相关联,如通过扫描TEM(STEM)质量对比分析推论得出的,该区域是壳过度生长过程中残留的金辅助材料自组装的影响。另外,百分之几的NW在其生长过程中显示出分支,我们确定了分支NW的晶体特性和缺陷。我们提出这种现象可能是由于NW生长期间金纳米粒子的不稳定性所致,并进一步证明在NW的分支点处会出现孪生缺陷。

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