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CaMg2Al16O27:Mn4+-based Red Phosphor: A Potential Color Converter for High-Powered Warm W-LED

机译:CaMg2Al16O27:Mn4 +基红色荧光粉:用于大功率暖色W-LED的潜在颜色转换器

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摘要

New non-rare-earth-based oxide red phosphor discovery is of great interest in the field of energy-efficient LED lighting. In this work, a novel blue-light activated CaMg2Al16O27:Mn4+ (CMA:Mn4+) phosphor, showing strong red emission peaked at similar to 655 nm under 468 nm excitation, is prepared by a solid-state reaction route. The microstructure and luminescent performance of this red-emitting phosphor are investigated in detail with the aids of X-ray diffraction refinement, diffuse reflection spectra, steady-state photoluminescence spectra and temperature-dependent PL/decay measurements. The crystal field strength (Dq) and the Racah parameters (B and C) are carefully calculated to evaluate the nephelauxetic effect of Mn4+ suffering from the CMA host. After incorporating CMA:Mn4+ and YAG:Ce3+ phosphor microcrystals into the glass host via a "phosphor-in-glass (PiG)" approach, warm white-light is achieved in the assembled high-powered w-LED device, thanks to the improved correlated color temperature and color rendering index.
机译:新的基于非稀土的氧化物红色荧光粉的发现在节能LED照明领域引起了极大的兴趣。在这项工作中,通过固态反应路线制备了一种新颖的蓝光激活的CaMg2Al16O27:Mn4 +(CMA:Mn4 +)荧光粉,该荧光粉在468 nm激发下显示出类似于655 nm峰值的强红色发射。借助X射线衍射细化,漫反射光谱,稳态光致发光光谱以及与温度相关的PL /衰变测量,详细研究了这种红色发光磷光体的微观结构和发光性能。仔细计算晶体场强度(Dq)和拉卡参数(B和C),以评估患有CMA宿主的Mn4 +的肾上腺皮质激素作用。通过“玻璃中荧光粉(PiG)”方法将CMA:Mn4 +和YAG:Ce3 +荧光粉微晶结合到玻璃主体中之后,由于改进了组装的大功率w-LED器件,所以获得了暖白光相关色温和显色指数。

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