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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Wet Chemical Approaches to Patterned Arrays of Well-Aligned ZnO Nanopillars Assisted by Monolayer Colloidal Crystals
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Wet Chemical Approaches to Patterned Arrays of Well-Aligned ZnO Nanopillars Assisted by Monolayer Colloidal Crystals

机译:湿化学方法对单层胶体晶体辅助的排列良好的ZnO纳米柱阵列的图案化阵列

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摘要

Hexagonally patterned arrays of well-aligned, regular ZnO nanopillars with controlled size, shape, and orientation were directly fabricated on zinc foils via a facile wet chemical approach with the assistance of monolayer colloidal crystals (MCC). Two kinds of templates that were derived from MCC, i.e., inverted MCC (IMCC) and connected MCC (CMCC), were employed as masks to define the growth sites and spaces on zinc foils for the realization of site-specific patterned growth of ZnO nanopillars. Individually patterned arrays of ZnO nanopillars (i.e., one ZnO nanopillar growing at one single growth site) were readily produced. Interestingly, the vertically aligned ZnO nanopillars were also side-oriented, indicating a quasi-epitaxial growth on the zinc substrate. The diameter of the ZnO nanopillars can be controlled in a wide range from 60 to 900 nm by varying the structural parameters of the MCC templates and the growth conditions. Moreover, by decreasing the reaction solution concentration, a bundle of ZnO nanorods rather than an individual nanopillar were selectively grown at one single growth site. The as-grown ZnO nanopillar arrays were well-crystallized and exhibited strong excitonic emission and weak defect-related emission at room temperature, which promises their potential applications in optical devices such as stimulated emitters and lasing cavities.
机译:在单层胶体晶体(MCC)的帮助下,通过简便的湿法化学方法,在锌箔上直接制造了具有良好排列,规则尺寸,形状和方向的规则ZnO纳米柱的六边形图案阵列。两种源自MCC的模板,即倒置MCC(IMCC)和连接的MCC(CMCC),被用作掩模,以定义锌箔上的生长位点和空间,以实现ZnO纳米柱的特定位置图案化生长。易于制作出单独图案化的ZnO纳米柱阵列(即,一个ZnO纳米柱在一个单一的生长位点生长)。有趣的是,垂直排列的ZnO纳米柱也是侧向的,表明在锌基板上有准外延生长。可以通过改变MCC模板的结构参数和生长条件,将ZnO纳米柱的直径控制在60至900 nm的宽范围内。此外,通过降低反应溶液的浓度,一束ZnO纳米棒而不是单个纳米柱在一个单一的生长位点选择性生长。生长中的ZnO纳米柱阵列结晶良好,在室温下表现出强激子发射和弱于缺陷相关的发射,这有望将其应用于光学器件中,例如受激发射体和激光腔。

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