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外延核壳纳米线的形态学

Morphology of epitaxial core-shell nanowires.

作者信息

Wang Hailong, Upmanyu Moneesh, Ciobanu Cristian V

机构信息

Simulation and Theory of Atomic-Scale Material Phenomena, Division of Engineering, Materials Science Program, Colorado School of Mines, Golden, Colorado 80401, USA.

出版信息

Nano Lett. 2008 Dec;8(12):4305-11. doi: 10.1021/nl8020973.

Abstract

We analyze the morphological stability against azimuthal, axial, and general helical perturbations for epitaxial core-shell nanowires in the growth regimes limited by either surface diffusion or evaporation-condensation surface kinetics. For both regimes, we find that geometric parameters (i.e., core radius and shell thickness) play a central role in determining whether the nanowire remains cylindrical or its shell breaks up into epitaxial islands similar to those observed during Stranski-Krastanow growth in thin epilayers. The combination of small cores and rapid growth of the shell emerges as the key factor leading to stable shell growth. Our results provide an explanation for the different core-shell morphologies reported in the Si-Ge system experimentally and also identify a growth-induced intrinsic mechanism for the formation of helical nanowires.

摘要

我们分析了在由表面扩散或蒸发-凝聚表面动力学限制的生长模式下,外延核壳纳米线针对方位角、轴向和一般螺旋扰动的形态稳定性。对于这两种模式,我们发现几何参数(即核半径和壳厚度)在确定纳米线是保持圆柱形还是其壳分解成类似于在薄外延层的斯特兰斯基-克拉斯坦诺夫生长过程中观察到的外延岛方面起着核心作用。小核与壳的快速生长相结合是导致壳稳定生长的关键因素。我们的结果为实验报道的Si-Ge系统中不同的核壳形态提供了解释,同时也确定了螺旋纳米线形成的生长诱导内在机制。

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