材料科学
窄带
钻石
光电子学
发光
热导率
光学
转换器
激光器
兴奋剂
人造金刚石
焊剂(冶金)
荧光粉
热的
电导率
复合数
光通量
发光二极管
金刚石材料性能
化学气相沉积
沉积(地质)
光电探测器
类金刚石碳
作者
Ran An,Shisheng Lin,Lingwei Zeng,Sifan Zhuo,Huaxiang Qiu,Dahai Hu,Shijie Hu,Hewen Lin,Feng Huang,Ping Huang,Daqin Chen
摘要
ABSTRACT Under high‐power blue laser irradiation, the availability of suitable narrow‐band color converters for laser‐driven displays is severely limited by elevated thermal accumulation and high photon flux. As such, we fabricated efficient narrowband green‐emitting β‐SiAlON: Eu 2+ & diamond phosphor‐in‐glass films (PiGFs). The incorporation of diamond particles significantly enhances the thermal conductivity and laser‐driven luminescence performance of the composite material. By optimizing the diamond content to 4 wt%, the luminous flux reached up to 4253 lm in static mode and 5729 lm in rotational mode. Further, when integrated into a laser‐driven display system, β‐SiAlON: Eu 2+ & diamond PiGFs exhibited superior display performance compared to conventional commercial color converters. This study provides valuable guidance for the development of novel narrow‐band color converters for next‐generation displays.
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