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Photonic crystal patterning of luminescent sol-gel films for light extraction

机译:发光溶胶-凝胶薄膜的光子晶体构图,用于光提取

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摘要

Structured luminescent thin films are investigated in the context of improved light extraction of phosphors for solid-state-lighting applications. Thin films composed of a sol-gel titania matrix doped with europium chelates are studied as a model system. These films, patterned with a square photonic lattice by soft nanoimprint lithography, are characterized by angle-resolved fluorescence. Modeling of this simple technique is shown to fit well the experimental data, revealing in great detail the guided modes of the film and their extraction parameters. An eightfold extraction enhancement factor of the film emission is measured. To further improve the extraction efficiency, we investigate the role of an additional low-index mesoporous silica underlayer through its influence on the guided modes of different polarizations and their interactions with the photonic crystal. Results obtained on model systems open the way towards the optimization of light-emitting devices, using a strategy of dielectric microstructure engineering using the sol-gel process.
机译:在固态照明应用中改进的磷光体光提取的背景下,研究了结构化发光薄膜。研究了由掺with螯合物的溶胶-凝胶二氧化钛基质组成的薄膜作为模型系统。这些薄膜通过软纳米压印光刻用正方形光子晶格构图,其特征在于角度分辨荧光。该简单技术的模型显示非常适合实验数据,非常详细地揭示了胶片的引导模式及其提取参数。测量了薄膜发射的八倍提取增强因子。为了进一步提高提取效率,我们研究了另外的低折射率介孔二氧化硅底层的作用,该底层对不同偏振的导模及其与光子晶体相互作用的影响。在模型系统上获得的结果,通过采用溶胶-凝胶工艺的介电微结构工程策略,为优化发光器件开辟了道路。

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