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Semiconductor nanowires self-assembled from colloidal CdTe nanocrystal building blocks: optical properties and application perspectives

机译:由胶态CdTe纳米晶体构件自组装的半导体纳米线:光学性质和应用前景

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摘要

Solution-based self-assembly of quasi-one-dimensional semiconductor nanostructures (nanowires) from quasi-zero-dimensional (quantum dots) colloidal nanocrystal building blocks has proven itself as a powerful and flexible preparation technique. Polycrystalline CdTe nanowires self-assembled from light-emitting thiol-capped CdTe nanocrystals are the focus of this Feature Article. These nanowires represent an interesting model system for quantum dot solids, where electronic coupling between the individual nanocrystals can be optically accessed and controlled. We provide a literature-based summary of the formation mechanism and the morphology-related aspects of self-assembled CdTe nanowires, and highlight several fundamental and application-related optical properties of these nanostructures. These include fundamental aspects of polarization anisotropies in photoluminescence excitation and emission, the electronic coupling between individual semiconductor nanocrystals constituting the nanowires, and more applied, waveguiding properties of CdTe nanowire bundles and anti-Stokes photoluminescence in a prototypical structure of co-axial nanowires. The optical properties of self-assembled CdTe nanowires considered here render them potential candidates for photonic nano-scale devices. This journal is © 2012 The Royal Society of Chemistry.
机译:基于溶液的基于准零维(量子点)胶体纳米晶体构建基的准一维半导体纳米结构(纳米线)的自组装已证明是一种强大而灵活的制备技术。由发光的巯基封端的CdTe纳米晶体自组装而成的多晶CdTe纳米线是本专题的重点。这些纳米线代表了一种有趣的量子点固体模型系统,其中各个纳米晶体之间的电子耦合可以通过光学方式访问和控制。我们提供了基于文献的自组装CdTe纳米线的形成机理和形态相关方面的摘要,并重点介绍了这些纳米结构的一些基本的和与应用相关的光学性质。这些包括光致发光激发和发射中的极化各向异性的基本方面,构成纳米线的各个半导体纳米晶体之间的电子耦合以及在同轴纳米线的原型结构中更广泛地应用的CdTe纳米线束的波导特性和抗斯托克斯光致发光。这里考虑的自组装CdTe纳米线的光学特性使其成为光子纳米级器件的潜在候选者。该期刊为©2012皇家化学学会。

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