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Structural analysis of thermal degradation and regeneration in blue phosphor BaMgAl10O17:Eu~(2+) based upon cation diffusion

机译:基于阳离子扩散的蓝色荧光粉BaMgAl10O17:Eu〜(2+)热降解和再生的结构分析

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摘要

Thermal degradation of blue phosphor BAM:Eu~(2+) under air is investigated using XPS, XRD, EPR and photoluminescence (PL) in order to analyze the loss of intensity in terms of modifications of the dopant distribution in the crystal cell and between crystal bulk and surface. This study reveals the key role played by oxidationdriven 2D diffusion of europiumand barium, that results in important concentration gradients and makes degradation strongly dependent on bothmicrostructure and cooling speed. Also based upon cation mobility, a possible regeneration effect is evidenced at moderate temperature. Flux treatments, known to increase the intensity of photoluminescence, also appear to reduce thermal degradation by lowering specific surface; they also enhance the regeneration process by forming extended single-crystal domains conducive to cation diffusion.
机译:使用XPS,XRD,EPR和光致发光(PL)研究了蓝色磷光体BAM:Eu〜(2+)在空气中的热降解,以便根据掺杂剂在晶胞中和硅之间的分布分布的变化来分析强度损失。晶体块和表面。这项研究揭示了氧化驱动的and和钡的二维扩散所起的关键作用,这导致重要的浓度梯度并使降解强烈依赖于微观结构和冷却速度。同样基于阳离子迁移率,在中等温度下可能产生再生效果。已知会增加光致发光强度的助焊剂处理,也似乎通过降低比表面积来减少热降解。它们还通过形成有助于阳离子扩散的扩展单晶域来增强再生过程。

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