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Controlled synthesis of ultrathin ZnO nanowires using micellar gold nanoparticles as catalyst templates

机译:超细氧化锌纳米线的可控合成用胶束金纳米粒子作为催化剂模板

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摘要

We demonstrate a simple and effective approach to control the diameter of ultrathin ZnO nanowires with high aspect ratios and high densities over large areas. Diblock copolymer-based nanoparticle arrays exhibiting a high degree of hexagonal order and offering easy control of particle size (typically 1-10 nm) and interparticle spacing (25-150 nm) are utilized as nanocatalysts for the subsequent growth of semiconductor nanowires. The as-grown ZnO nanowires exhibit a single crystal hexagonal wurtzite structure and grow along the [0002] direction. Facetted catalyst particles were observed at the tip of the nanowires after synthesis, thus suggesting a catalyst-assisted vapor-solid-solid (VSS) rather than a vapor-liquid-solid (VLS) growth mechanism, the latter being frequently used in semiconductor nanowire production. Such a growth process allows us to easily prepare ultrathin ZnO nanowires with tunable diameters well below 10 nm by taking advantage of the inherent size control of the micellar method during deposition of the catalyst nanoparticles. Raman spectroscopy reveals a phonon confinement effect as the diameter of nanowires decreases. Photoluminescence spectra of these ultrathin nanowires indicate a blue shift of the free excitons and their phonon replicas by 37 meV induced by quantum confinement.
机译:我们将演示一个简单而有效的方法控制超细氧化锌纳米线的直径高纵横比和密度都很高大的地区。表现出高度的六角形阵列秩序和提供简单的控制粒子的大小(通常1 - 10 nm)和颗粒间的间距(25 - 150 nm)和nanocatalysts的利用随后的半导体纳米线的生长。是成年人氧化锌纳米线表现出单晶六角纤锌矿结构和生长[0002]方向。观察后的纳米线顶端合成,从而暗示catalyst-assistedvapor-solid-solid (VSS)而不是一个vapor-liquid-solid (VLS)生长机制,后者常用于半导体纳米线生产。我们很容易准备超薄氧化锌纳米线可调直径远低于10纳米利用固有的尺寸控制胶束在沉积催化剂的方法纳米粒子。声子监禁的直径纳米线下降。这些超薄纳米线显示一个蓝色的转变自由激子与声子的副本37兆电子伏引起量子约束。

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