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使用电子和激光激发对涂覆有铝纳米颗粒的氧化锌中增强的激子发射进行的相关研究。

Correlative Study of Enhanced Excitonic Emission in ZnO Coated with Al Nanoparticles using Electron and Laser Excitation.

作者信息

Fiedler Saskia, Lem Laurent O Lee Cheong, Ton-That Cuong, Schleuning Markus, Hoffmann Axel, Phillips Matthew R

机构信息

School of Mathematical and Physical Sciences, University of Technology Sydney, 15 Broadway, Ultimo, NSW, 2007, Australia.

Centre for Nano Optics, University of Southern Denmark, Campusvej 55, 5230, Odense M, Denmark.

出版信息

Sci Rep. 2020 Feb 13;10(1):2553. doi: 10.1038/s41598-020-59326-3.

Abstract

Recently, metal nanoparticle surface coatings have been found to significantly enhance the ultra-violet luminescence intensity from ZnO, providing a viable means to mitigate optical losses and improve LED performance. Although there is general agreement that resonantly excited Localized Surface Plasmons (LSPs) in metal nanoparticles can directly couple to excitons in the semiconductor increasing their spontaneous emission rate, the exact mechanisms involved in this phenomenon are currently not fully understood. In this work, LSP-exciton coupling in bulk and nanostructured ZnO coated with a 2 nm Al nanoparticle layer is investigated using correlative photoluminescence and depth-resolved cathodoluminescence and time-resolved photoluminescence spectroscopy. Temperature-resolved cathodoluminescence and photoluminescence measurements from 10 K to 250 K show free exciton (FX) emission enhancement factors up to 12x at 80 K, and reveal that the FX couple more efficiently to the LSPs compared to the localized donor-bound excitons. A strong polarization dependence between the LSPs and FX is observed where FX transitions are more strongly enhanced when polarized in the same direction as the electric field of the incident excitation, which is different for laser and electron beam sources. This result indicates that selective enhancement of the excitonic emission peaks in the ZnO coated with Al nanoparticles can be achieved by choosing the appropriate ZnO substrate orientation.

摘要

最近,人们发现金属纳米颗粒表面涂层能显著增强氧化锌的紫外发光强度,这为减少光损耗和提高发光二极管性能提供了一种可行的方法。尽管人们普遍认为金属纳米颗粒中谐振激发的局域表面等离子体(LSPs)可直接与半导体中的激子耦合,从而提高其自发发射率,但目前对这一现象所涉及的确切机制尚未完全理解。在这项工作中,我们使用相关光致发光、深度分辨阴极发光和时间分辨光致发光光谱,研究了涂有2纳米铝纳米颗粒层的块状和纳米结构氧化锌中的LSP-激子耦合。从10K到250K的温度分辨阴极发光和光致发光测量结果表明,在80K时自由激子(FX)发射增强因子高达12倍,并且表明与局域施主束缚激子相比,FX与LSPs的耦合效率更高。我们观察到LSPs与FX之间存在强烈的偏振依赖性,当FX跃迁的偏振方向与入射激发电场的方向相同时,其增强更为强烈,而激光和电子束源的情况则有所不同。这一结果表明,通过选择合适的氧化锌衬底取向,可以实现对涂有铝纳米颗粒的氧化锌中激子发射峰的选择性增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85c7/7018697/cf52bd7ba51b/41598_2020_59326_Fig1_HTML.jpg

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