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Role of Thermodynamics and Kinetics in the Composition of Ternary III-V Nanowires

机译:热力学和动力学在三元III-V纳米线组成中的作用

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摘要

We explain the composition of ternary nanowires nucleating from a quaternary liquid melt. The model we derive describes the evolution of the solid composition from the nucleated-limited composition to the kinetic one. The effect of the growth temperature, group V concentration and Au/III concentration ratio on the solid-liquid dependence is studied. It has been shown that the solid composition increases with increasing temperature and Au concentration in the droplet at the fixed In/Ga concentration ratio. The model does not depend on the site of nucleation and the geometry of monolayer growth and is applicable for nucleation and growth on a facet with finite radius. The case of a steady-state (or final) solid composition is considered and discussed separately. While the nucleation-limited liquid-solid composition dependence contains the miscibility gap at relevant temperatures for growth of InxGa1−xAs NWs, the miscibility gap may be suppressed completely in the steady-state growth regime at high supersaturation. The theoretical results are compared with available experimental data via the combination of the here described solid-liquid and a simple kinetic liquid-vapor model.
机译:我们解释了从季液熔体中核肉的三元纳米线的组成。我们衍生的模型描述了固体组合物从核化的组合物到动力学的速度的演变。研究了生长温度,V族浓度和Au / III浓度比对固液依赖性的影响。已经表明,固体组合物随着温度的升高和液滴中的浓度的增加而增加,固定在/ GA浓度比中。该模型不依赖于成核的部位和单层生长的几何形状,并且适用于具有有限半径的小组上的成核和生长。考虑并单独讨论稳态(或最终)固体组合物的情况。虽然核心有限的液体 - 固体组合物依赖性含有在inxga1-xasnws的生长的相关温度下的混溶性间隙,但在高过饱和度下可以在稳态生长状态下完全抑制混溶性间隙。将理论结果与可用的实验数据进行比较,通过这里描述的固体液体和简单的动力学 - 蒸汽模型。

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