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采用胶束金纳米粒子作为催化剂模板,控制合成超薄 ZnO 纳米线。

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

机构信息

Institute for Materials Research (IMO-IMOMEC), Hasselt University, Wetenschapspark 1, B-3590, Diepenbeek, Belgium.

出版信息

Nanoscale. 2013 Aug 7;5(15):7046-53. doi: 10.1039/c3nr01938a.

Abstract

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.

摘要

我们展示了一种简单而有效的方法,可控制具有高纵横比和高密度的超薄 ZnO 纳米线的直径,且在大面积上也能实现这一效果。我们利用基于两亲嵌段共聚物的纳米粒子阵列作为纳米催化剂,来实现后续半导体纳米线的生长,该纳米粒子阵列具有高度的六角形有序性,且易于控制粒径(通常为 1-10nm)和粒子间的间隔(25-150nm)。所生长的 ZnO 纳米线具有单晶六方纤锌矿结构,沿[0002]方向生长。在合成后,在纳米线的尖端观察到了具有多面体形貌的催化剂颗粒,这表明生长机制是催化剂辅助的气-固-固(VSS)机制,而不是常用于半导体纳米线生产的气-液-固(VLS)机制。这种生长过程使我们能够通过利用在催化剂纳米颗粒沉积过程中胶束法的固有尺寸控制,轻松制备直径可低至 10nm 以下的可调谐超薄 ZnO 纳米线。拉曼光谱显示,随着纳米线直径的减小,出现了声子限制效应。这些超薄纳米线的光致发光光谱表明,量子限制导致自由激子及其声子复制品蓝移 37meV。

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