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Nanowire Heterostructures

机译:纳米线异质结构

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The nanoscale diameter and high aspect ratio of nanowires are the foundation of fascinating structure-property relationships derived from confinement, interface effects, and mechanical degrees of freedom. When heterostructures are formed by high-quality growth of dissimilar materials on or within nanowires, the interactions of the low-dimensional components and their interfaces can give rise to electronic, photonic, magnetic, and thermal characteristics that are superior to those of (or unattainable in) planar geometries. This tutorial review provides a brief overview of heterostructures with a semiconductor nanowire as the central component, describes the properties of nanoscale components and interfaces, and distills the advantages that arise from the unique structure-property relationships. A select set of these concepts are further elaborated by highlighting electronic, optoelectronic, and energy-related applications that have successfully exploited these advantages.
机译:纳米线的纳米级直径和高长径比是由约束,界面效应和机械自由度得出的引人入胜的结构-特性关系的基础。当异质结构是由纳米线上或之内的异质材料的高质量生长形成的时,低维组件及其界面的相互作用会导致电子,光子,磁和热特性优于(或无法达到) in)平面几何形状。本教程的回顾简要概述了以半导体纳米线为主要成分的异质结构,描述了纳米级成分和界面的特性,并提炼了由独特的结构-性质关系带来的优势。通过重点介绍已成功利用这些优势的电子,光电和与能源相关的应用,进一步详细介绍了这些概念中的一组精选概念。

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