荧光粉
青色
材料科学
显色指数
发光效率
发光二极管
分析化学(期刊)
二极管
色温
兴奋剂
光电子学
光学
化学
纳米技术
物理
图层(电子)
色谱法
作者
Xuanchu Liu,Congcong Yang,Yanbin Li,Min Chang,Jian Kang,Tianyuan Zhou,Chunming Zhou,Chaofan Shi,Cen Shao,Bingheng Sun,W. Stręk,Hao Chen,Le Zhang
标识
DOI:10.26599/jac.2024.9220900
摘要
Achieving high color rendering index (CRI) and luminous stability in single-structured Ce:YAG phosphor ceramics (PCs) is crucial for high-power white light-emitting diodes or laser diodes (LEDs/LDs). However, cyan valley and insufficient red component of the Ce:YAG emission spectra significantly limit their real applications. In this work, a series of Ce,Mn:Y3(Al,Sc)2Al3O12 (Ce,Mn:YSAG) PCs were fabricated by the vacuum sintering, and an efficient spectral regulation was realized for full-color lighting. The cyan valley was filled by blue-shifted emission peak of Ce3+ via Sc3+ doping. The orange-red emission around 580 nm was effectively supplemented via Mn2+ doping. Particularly, the CRI of Ce,Mn:YSAG increased from 56.4 to 85.8 with a 52% increment compared with Ce:YAG under high-power LED excitation, and the operating temperature was stable at about 50 ℃ under long working time. Meanwhile, the CRI values of 80.9 could still be obtained in PC based white LDs. These results indicated that Ce,Mn:YSAG PC with excellent CRI and luminous stability is an extremely promising color convertor for high-power white LEDs/LDs.
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