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OPTICALLY TRANSPARENT LUMINESCENT NANOSTRUCTURED CERAMIC MATERIAL

机译:光学透明发光纳米结构陶瓷材料

摘要

FIELD: optoelectronics and laser technology.;SUBSTANCE: invention relates to the field of creating optically transparent luminescent nanostructured ceramic materials based on aluminum-magnesium spinel (MgAl2O4) and can be used as a functional material for photonic devices, optoelectronics and laser technology. An optically transparent luminescent nanostructured ceramic material based on a matrix of aluminum-magnesium spinel containing aluminum oxide is proposed, characterized in that the matrix of aluminum-magnesium spinel additionally contains carbon in the form of graphene plates 3-10 nm in size with the following mass ratio of components, %: aluminum-magnesium spinel (MgAl2O4) 99.3-99.49; aluminum oxide (Al2O3) 0.4-0.5; carbon (C) 0.01-0.3. Aluminum-magnesium spinel and aluminum oxide are in a nanostructured state with a coherent scattering region of 5–40 nm.;EFFECT: material has a tunable photoluminescent range, which will make it possible to use it in LED devices, plasma display panels, tunable detectors of the UV-visible spectral range, light matrix indicators.;1 cl, 5 dwg, 1 tbl, 2 ex
机译:场:光电子和激光技术。物质:发明领域涉及基于铝 - 镁尖晶石(MgAl2O4)的光学透明发光纳米结构陶瓷材料领域,可用作光子器件,光电子和激光技术的功能材料。提出了一种基于含铝氧化铝的铝镁尖晶石基质的光学透明发光纳米结构陶瓷材料,其特征在于,铝 - 镁尖晶石的基质另外含有石墨烯板形式的碳,其尺寸为3-10nm的尺寸组分质量比,%:铝 - 镁尖晶石(MgAl2O4)99.3-99.49;氧化铝(Al2O3)0.4-0.5;碳(c)0.01-0.3。铝镁尖晶石和氧化铝处于纳米结构状态,其相干散射区域为5-40nm。;效果:材料具有可调谐的光致发光范围,这将使它可以在LED器件中使用它,等离子体显示板,可调谐探测器紫外线可见光谱范围,光矩阵指示器。; 1 cl,5 dwg,1 tbl,2前

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