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基于III族元素混合的汽-液-固III-V族三元纳米线的组成

Composition of Vapor-Liquid-Solid III-V Ternary Nanowires Based on Group-III Intermix.

作者信息

Dubrovskii Vladimir G

机构信息

Faculty of Physics, St. Petersburg State University, Universitetskaya Emb. 13B, St. Petersburg 199034, Russia.

出版信息

Nanomaterials (Basel). 2023 Sep 11;13(18):2532. doi: 10.3390/nano13182532.

Abstract

Compositional control in III-V ternary nanowires grown by the vapor-liquid-solid method is essential for bandgap engineering and the design of functional nanowire nano-heterostructures. Herein, we present rather general theoretical considerations and derive explicit forms of the stationary vapor-solid and liquid-solid distributions of vapor-liquid-solid III-V ternary nanowires based on group-III intermix. It is shown that the vapor-solid distribution of such nanowires is kinetically controlled, while the liquid-solid distribution is in equilibrium or nucleation-limited. For a more technologically important vapor-solid distribution connecting nanowire composition with vapor composition, the kinetic suppression of miscibility gaps at a growth temperature is possible, while miscibility gaps (and generally strong non-linearity of the compositional curves) always remain in the equilibrium liquid-solid distribution. We analyze the available experimental data on the compositions of the vapor-liquid-solid AlGaAs, InGaAs, InGaP, and InGaN nanowires, which are very well described within the model. Overall, the developed approach circumvents uncertainty in choosing the relevant compositional model (close-to-equilibrium or kinetic), eliminates unknown parameters in the vapor-solid distribution of vapor-liquid-solid nanowires based on group-III intermix, and should be useful for the precise compositional tuning of such nanowires.

摘要

通过气-液-固方法生长的III-V族三元纳米线的成分控制对于带隙工程和功能性纳米线纳米异质结构的设计至关重要。在此,我们给出了相当普遍的理论考量,并基于III族元素混合推导了气-液-固III-V族三元纳米线的稳态气-固和液-固分布的显式形式。结果表明,此类纳米线的气-固分布受动力学控制,而液-固分布处于平衡态或成核受限状态。对于将纳米线成分与气相成分联系起来的更具技术重要性的气-固分布,在生长温度下对混溶间隙进行动力学抑制是可能的,而混溶间隙(以及成分曲线通常很强的非线性)总是存在于平衡液-固分布中。我们分析了关于气-液-固AlGaAs、InGaAs、InGaP和InGaN纳米线成分的现有实验数据,这些数据在该模型中得到了很好的描述。总体而言,所开发的方法避免了在选择相关成分模型(接近平衡或动力学)时的不确定性,消除了基于III族元素混合的气-液-固纳米线气-固分布中的未知参数,并且应该有助于对此类纳米线进行精确的成分调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/336a/10536332/36323ba52f81/nanomaterials-13-02532-g001.jpg

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