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beta-Sialon:Eu phosphor-in-glass: a robust green color converter for high power blue laser lighting

机译:beta-Sialon:Eu玻璃中荧光粉:一种坚固的绿色转换器,用于大功率蓝色激光照明

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摘要

Solid state laser lighting is superior to white light-emitting diodes in brightness, efficiency and color gamut, which require thermally robust color converters that can be endured by high power blue laser irradiation. Due to this, the application of bulk phosphor-in-glass (PiG) luminescent materials could be of great interest. Here, we report a green-emitting PiG material by co-firing beta-Sialon:Eu phosphor powders with the ZnO-B2O3-BaO-Al2O3 glass frits at 630-660 degrees C for 20-80 min in air. The microstructure, photoluminescence spectra, quantum efficiency, transmittance and thermal quenching of the beta-Sialon: Eu PiG materials were investigated. The microstructural analysis indicated that beta-Sialon: Eu phosphor powders were uniformly dispersed in the glass matrix without any interfacial reactions. The luminescence efficiency and transparency of the PiG materials were largely dependent on the phosphor concentration, firing temperature and dwell time. Under the blue laser excitation, the optimized PiG sample consisting of 5 wt% beta-Sialon: Eu showed a linear relationship between the luminous flux and the incident laser power when the blue laser flux density was below 0.7 W mm(-2), indicating its potential applications in solid state laser lighting.
机译:固态激光照明在亮度,效率和色域方面优于白色发光二极管,后者需要耐热坚固的色彩转换器,而该转换器必须能够承受高功率的蓝色激光照射。因此,块状玻璃中磷光体(PiG)发光材料的应用可能引起人们极大的兴趣。在这里,我们通过将β-Sialon:Eu荧光粉与ZnO-B2O3-BaO-Al2O3玻璃粉在空气中于630-660℃共烧20-80分钟来报告一种绿色发光的PiG材料。研究了β-Sialon:Eu PiG材料的微观结构,光致发光光谱,量子效率,透射率和热猝灭。微观结构分析表明,β-Sialon:Eu荧光粉粉末均匀地分散在玻璃基质中,没有任何界面反应。 PiG材料的发光效率和透明性在很大程度上取决于磷光体的浓度,烧结温度和停留时间。在蓝色激光激发下,当蓝色激光通量密度低于0.7 W mm(-2)时,由5 wt%β-Sialon:Eu组成的优化的PiG样品在光通量和入射激光功率之间呈线性关系,表明它在固态激光照明中的潜在应用。

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