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Plasmonic enhancement of Eu:Y2O3 luminescence by Al percolated layer

机译:铝渗透层等离子增强Eu:Y2O3发光

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The coupling between Eu3+ rare earth emitters and Al has been investigated in multilayer structures, which consist of an Eu:Y2O3 phosphor film deposited between percolated and continuous Al films. Passive buffer Y2O3 layers were deposited between phosphor and Al films with different thicknesses to analyze the role of the Eu-Al distance on the nanostructuration and emission of the Eu:Y2O3 film. By using Eu3+ emitters as local structural probes completed by transmission electron microscopy analyses, we show that the deposition on Al promotes the growth of the cubic crystallites. A fluorescence analysis allows us to evaluate the presence of a perturbed structural shell around the cubic core of the crystallites. Moreover, the enhancement observed at short distances is attributed to the localized plasmon resonance of the percolated upper Al film.
机译:已在多层结构中研究了Eu3 +稀土发射体与Al之间的耦合,该多层结构由沉积在渗透和连续Al膜之间的Eu:Y2O3荧光粉膜组成。在不同厚度的荧光粉和Al膜之间沉积了被动缓冲剂Y2O3层,以分析Eu-Al距离对Eu:Y2O3膜的纳米结构和发射的作用。通过使用Eu3 +发射体作为通过透射电子显微镜分析完成的局部结构探针,我们表明Al上的沉积促进了立方微晶的生长。荧光分析使我们能够评估微晶立方核周围存在扰动的结构壳。而且,在近距离观察到的增强归因于渗透的上Al膜的局部等离子体激元共振。

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