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纳米线生长中液-固界面的成核后演化

Post-nucleation evolution of the liquid-solid interface in nanowire growth.

作者信息

Maliakkal Carina B, Jacobsson Daniel, Tornberg Marcus, Dick Kimberly A

机构信息

Centre for Analysis and Synthesis, Lund University, Box 124, 22100, Lund, Sweden.

Solid State Physics, Lund University, Box 118, 22100, Lund, Sweden.

出版信息

Nanotechnology. 2021 Dec 17;33(10). doi: 10.1088/1361-6528/ac3e8d.

Abstract

We study usingtransmission electron microscopy the birth of GaAs nanowires from liquid Au-Ga catalysts on amorphous substrates. Lattice-resolved observations of the starting stages of growth are reported here for the first time. It reveals how the initial nanostructure evolves into a nanowire growing in a zincblende 〈111〉 or the equivalent wurtzite〈0001〉 direction. This growth direction(s) is what is typically observed in most III-V and II-VI nanowires. However, the reason for this preferential nanowire growth along this direction is still a dilemma. Based on the videos recorded shortly after the nucleation of nanowires, we argue that the lower catalyst droplet-nanowire interface energy of the {111} facet when zincblende (or the equivalent {0001} facet in wurtzite) is the reason for this direction selectivity in nanowires.

摘要

我们使用透射电子显微镜研究了非晶衬底上液态金镓催化剂中砷化镓纳米线的生长过程。本文首次报道了对生长起始阶段的晶格分辨观察结果。它揭示了初始纳米结构如何演变成沿闪锌矿〈111〉或等效纤锌矿〈0001〉方向生长的纳米线。这种生长方向是大多数III-V族和II-VI族纳米线中通常观察到的。然而,这种纳米线沿该方向优先生长的原因仍然是一个难题。基于纳米线成核后不久记录下的视频,我们认为当闪锌矿(或纤锌矿中等效的{0001}面)时{111}面的较低催化剂液滴-纳米线界面能是纳米线这种方向选择性的原因。

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