材料科学
色度
显色指数
发光
色温
发光二极管
离子
荧光粉
光电子学
兴奋剂
热稳定性
分析化学(期刊)
二极管
光学
化学工程
化学
物理
有机化学
工程类
色谱法
作者
Yuelong Ma,Le Zhang,Tianyuan Zhou,Bingheng Sun,Chen Hou,Shunshun Yang,Jin Huang,Rui Wang,F. A. Selim,Zhongying Wang,Ming Li,Hao Chen,Yun Wang
标识
DOI:10.1016/j.jeurceramsoc.2020.11.001
摘要
Ce:Y3Al5O12 transparent ceramics (TCs) with appropriate emission light proportion and high thermal stability are significant to construct white light emitting diode devices with excellent chromaticity parameters. In this work, strategies of controlling crystal-field splitting around Ce3+ ion and doping orange-red emitting ion, were adopted to fabricate Ce:(Y,Tb)3(Al,Mn)5O12 TCs via vacuum sintering technique. Notably, 85.4 % of the room-temperature luminescence intensity of the TC was retained at 150 °C, and the color rendering index was as high as 79.8. Furthermore, a 12 nm red shift and a 16.2 % increase of full width at half maximum were achieved owing to the synergistic effects of Tb3+ and Mn2+ ions. By combining TCs with a 460 nm blue chip, a warm white light with a low correlated color temperature of 4155 K was acquired. Meanwhile, the action mechanism of Tb3+ ion and the energy transfer between Ce3+ and Mn2+ ions were verified in prepared TCs.
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