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Large-area zinc oxide nanorod arrays templated by nanoimprint lithography: control of morphologies and optical properties

机译:通过纳米压印光刻模板化的大面积氧化锌纳米棒阵列:控制形态和光学性质

摘要

Vertically aligned, highly ordered, large area arrays of nanostructures are important building blocks for multifunctional devices. Here, ZnO nanorod arrays are selectively synthesized on Si substrates by a solution method within patterns created by nanoimprint lithography. The growth modes of two dimensional nucleation-driven wedding cakes and screw dislocation-driven spirals are inferred to determine the top end morphologies of the nanorods. Sub-bandgap photoluminescence of the nanorods is greatly enhanced by the manipulation of the hydrogen donors via a post-growth thermal treatment. Lasing behavior is facilitated in the nanorods with faceted top ends formed from wedding cakes growth mode. This work demonstrates the control of morphologies of oxide nanostructures in a large scale and the optimization of the optical performance.
机译:垂直排列,高度有序的大面积纳米结构阵列是多功能设备的重要组成部分。在此,通过溶液法在由纳米压印光刻术产生的图案内在硅衬底上选择性地合成ZnO纳米棒阵列。推断出二维成核驱动的结婚蛋糕和螺旋位错驱动的螺旋的生长模式,以确定纳米棒的顶端形态。纳米棒的亚带隙光致发光通过生长后热处理对氢供体的操纵而大大增强。纳米棒的喜好行为由结婚蛋糕的生长模式形成,其端面多面。这项工作证明了大规模控制氧化物纳米结构的形态和光学性能的优化。

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