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Luminescent behavior of the K2SiF6:Mn4+ red phosphor at high fluxes and at the microscopic level

机译:K2siF6:mn4 +红色荧光粉在高通量和微观水平下的发光行为

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摘要

Phosphor-converted white light-emitting diodes (LEDs) are becoming increasingly popular for general lighting. The non-rare-earth phosphorK(2)SiF(6): Mn4+, showing promising saturated red d-d-line emission, was investigated. To evaluate the application potential of this phosphor, the luminescence behavior was studied at high excitation intensities and on the microscopic level. The emission shows a sublinear behavior at excitation powers exceeding 40 W/cm(2), caused by ground-state depletion due to the ms range luminescence lifetime. The thermal properties of the luminescence in K2SiF6: Mn4+ were investigated up to 450 K, with thermal quenching only setting in above 400 K. The luminescence lifetime decreases with increasing temperature, even before thermal quenching sets in, which is favorable to counteract the sublinear response at high excitation intensity. A second, faster, decay component emerges above 295 K, which, according to crystal field calculations, is related to a fraction of the Mn4+ ions incorporated on tetragonally deformed lattice sites. A combined investigation of structural and luminescence properties in a scanning electron microscope using energy-dispersive X-ray spectroscopy and cathodoluminescence mappings showed both phosphor degradation at high fluxes and a preferential location of the light outcoupling at irregularities in the crystal facets. The use of K2SiF6: Mn4+ in a remote phosphor configuration is discussed.
机译:磷光转换的白光发光二极管(LED)在普通照明中越来越受欢迎。研究了非稀土荧光粉K(2)SiF(6):Mn4 +,显示出有希望的饱和红色d-d-线发射。为了评估这种荧光粉的应用潜力,在高激发强度和微观水平上研究了发光行为。该发射在超过40 W / cm(2)的激发功率下表现出亚线性行为,这是由于ms范围发光寿命导致的基态损耗引起的。研究了K2SiF6:Mn4 +中发光的热学性质,直至450 K,仅将热淬火设置为400 K以上。即使在热淬火开始之前,发光寿命也会随着温度的升高而降低,这有利于抵消亚线性响应在高激发强度下第二个更快的衰减分量出现在295 K以上,根据晶体场计算,这与掺入四边形变形晶格位点的Mn4 +离子的一部分有关。在扫描电子显微镜中使用能量色散X射线光谱和阴极发光图谱对结构和发光特性进行的综合研究表明,高通量下的磷光体会降解,并且在晶体刻面上的不规则处,光输出的优先位置也会降低。讨论了在远程磷光体配置中使用K2SiF6:Mn4 +。

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