荧光粉
硼硅酸盐玻璃
光通量
材料科学
显色指数
发光效率
放电等离子烧结
光电子学
发光
烧结
化学工程
纳米技术
复合材料
光学
图层(电子)
光源
物理
工程类
作者
Manman Zhang,Mengmeng Meng,Lingjun Zhou,Panyi Wang,Yingying Cui,Yangyang Jiang,Muzhi Cai,Jintian Tang,Youjie Hua,Laurent Calvez,Xvsheng Qiao,Xianghua Zhang,Shiqing Xu
标识
DOI:10.1002/lpor.202401501
摘要
Abstract Red‐emitting phosphor‐in‐glass (Red‐PiG) color converters are critical for high‐power light‐emitting diode or laser‐driven lighting applications, yet they remain challenging due to the degradation and interfacial reactions of red‐emitting phosphors within glass matrixes. This study investigates the efficacy of spark plasma sintering (SPS) in inhibiting these interfacial reactions across different phosphor and glass compositions. CaAlSiN 3 :Eu 2+ and Sr 2 Si 5 N 8 :Eu 2+ phosphors, along with fluoride and borosilicate glasses, are selected to explore their interfacial behavior during SPS. By optimizing the interfacial morphology, a borosilicate‐based PiG with a luminous flux of 248 lm and a luminous efficiency of 173 lm W −1 is achieved, setting new benchmarks for Red‐PiG performance. In addition, laser‐driven white lighting based on the high‐performance Red‐PiG has a color rendering index of up to 90. The findings elucidate the mechanisms by which SPS can enhance interfacial stability and optical performance in Red‐PiG materials, offering strategic insights for advancing the synthesis of high‐quality PiG materials for optoelectronic applications.
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