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用于可变色温及高显色指数发光二极管/激光二极管照明的条形码结构钇铝石榴石:铈/钇铝石榴石:铈,锰陶瓷荧光粉

Barcode-structured YAG:Ce/YAG:Ce,Mn ceramic phosphors for variable CCT and high CRI LED/LD lighting.

作者信息

Liu Zitong, Zhang Le, Kang Jian, Zhou Tianyuan, Chen Shiwei, Yang Peng, Sun Bingheng, Li Yang, Chen Hao

出版信息

Opt Express. 2023 Jul 17;31(15):24914-24925. doi: 10.1364/OE.495061.

Abstract

Ceramic phosphors are widely considered the next-generation phosphor material for white LED/LD lighting, and a wide spectrum is a key factor in improving the CRI of lighting sources. In this paper, a novel, to our knowledge, barcode-structured YAG:Ce/YAG:Ce,Mn ceramic phosphor was designed and fabricated. The lighting sources with the CRI value of 73.5 and 68.9 were obtained under the excitation of blue LEDs and blue LDs, respectively. Simultaneously, thanks to the effective supplementary emission from a red LD, the CRI of the ceramic-based lighting source reached 81.8 under blue LD excitation. Specifically, the microstructure and luminescent property of ceramic phosphors with different thicknesses and ion doping concentrations were systematically studied. Besides, by changing the blue power from 0.52 W to 2.60 W, the CCT of the laser lighting source with the encapsulation of optimized YAG:Ce/YAG:Ce,Mn ceramic phosphors ranged from 3928 K to 5895 K, while the CRI always maintained above 80. The above results indicate that barcode-structured Ce:YAG/Ce,MnYAG ceramic phosphor is a candidate to achieve a high CRI and ican be applied to various lighting occasions.

摘要

陶瓷荧光粉被广泛认为是用于白光发光二极管/激光二极管照明的下一代荧光粉材料,宽光谱是提高光源显色指数的关键因素。在本文中,据我们所知,设计并制备了一种新型的条形码结构YAG:Ce/YAG:Ce,Mn陶瓷荧光粉。在蓝色发光二极管和蓝色激光二极管的激发下,分别获得了显色指数为73.5和68.9的光源。同时,由于红色激光二极管的有效补充发射,基于陶瓷的光源在蓝色激光二极管激发下的显色指数达到了81.8。具体而言,系统研究了不同厚度和离子掺杂浓度的陶瓷荧光粉的微观结构和发光性能。此外,通过将蓝色功率从0.52 W改变到2.60 W,封装优化后的YAG:Ce/YAG:Ce,Mn陶瓷荧光粉的激光光源的相关色温范围为3928 K至5895 K,而显色指数始终保持在80以上。上述结果表明,条形码结构的Ce:YAG/Ce,MnYAG陶瓷荧光粉是实现高显色指数的候选材料,可应用于各种照明场合。

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