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Control of the crystal structure of InAs nanowires by tuning contributions of adatom diffusion

机译:通过调整原子扩散的贡献来控制InAs纳米线的晶体结构

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The dependence of crystal structure on contributions of adatom diffusion (ADD) and precursor direct impingement (DIM) was investigated for vapor-liquid-solid growth of InAs nanowires (NWs). The ADD contributions from the sidewalls and substrate surface can be changed by using GaAs NWs of different length as the basis for growing InAs NWs. We found that pure zinc-blende structure is favored when DIM contributions dominate. Moreover, without changing the NW diameter or growth parameters (such as temperature or V/III ratio), a transition from zinc-blende to wurtzite structure can be realized by increasing the ADD contributions. A nucleation model is proposed in which ADD and DIM contributions play different roles in determining the location and phase of the nucleus.
机译:对于InAs纳米线(NWs)的气-液-固生长,研究了晶体结构对吸附原子扩散(ADD)和前驱体直接撞击(DIM)的贡献的依赖性。可以通过使用不同长度的GaAs NW作为生长InAs NW的基础来改变侧壁和衬底表面对ADD的贡献。我们发现,当DIM贡献占主导地位时,纯锌合金结构受到青睐。此外,在不改变NW直径或生长参数(例如温度或V / III比)的情况下,可以通过增加ADD贡献来实现从闪锌矿到纤锌矿结构的转变。提出了一种成核模型,其中ADD和DIM贡献在确定核的位置和相位方面起着不同的作用。

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