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首页> 外文期刊>Nanoscale >Interaction between lamellar twinning and catalyst dynamics in spontaneous core-shell InGaP nanowires
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Interaction between lamellar twinning and catalyst dynamics in spontaneous core-shell InGaP nanowires

机译:层状双晶和催化剂之间的相互作用在自发的核壳InGaP动力学纳米线

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Semiconductor nanowires oriented along the [211] direction usually present twins parallel to their axis. For group IV nanowires this kind of twin allows the formation of a catalyst-nanowire interface composed of two equivalent {111} facets. For III-V nanowires, however, the twin will generate two facets with different polarities. In order to keep the orientation stable, a balance in growth rates for these different facets must be reached. We report here the observation of stable, micron-long -oriented InGaP nanowires with a spontaneous core-shell structure. We show that stacking fault formation in the crystal region corresponding to the {111} A facet termination provides a stable NW/NP interface for growth along the direction. During sample cool down, however, the catalyst migrates to a lateral {111} B facet, allowing the growth of branches perpendicular to the initial orientation. In addition to that, we show that the core-shell structure is non-concentric, most likely due to the asymmetry between the facets formed in the NW sidewall; this effect generates stress along the nanowire, which can be relieved through bending.
机译:面向半导体纳米线沿[211]通常出现双胞胎平行方向轴。允许catalyst-nanowire的形成接口组成的两个等价的{111}方面。将生成两个方面不同极性。定位稳定、平衡的增长这些不同的方面必须达到。这里稳定的观测,微米长的 (InGaP纳米线与自发的核壳结构。水晶地区形成对应{111}终止一个方面提供了一个稳定的西北增长/ NP接口沿方向。催化剂B侧{111}面迁移,允许垂直于分支的发展最初的方向。表明,核壳结构non-concentric,最有可能由于不对称面之间形成的NW侧壁;这种效应会产生沿着纳米线压力,这可以通过弯曲松了一口气。

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