Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, P. R. China.
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.
Chem Soc Rev. 2015 Dec 7;44(23):8688-713. doi: 10.1039/c4cs00446a.
Nowadays, phosphor converted white light-emitting diodes (pc-WLEDs) have been widely used in solid-state lighting and display areas due to their superior lifetime, efficiency, and reliability as well as significant reduction in power consumption. Phosphors are indispensable components of pc-WLED devices, and their luminescence properties determine the quality of WLED lighting and displays. In order to further achieve high luminous efficacy, chromatic stability, and color-rending properties in pc-WLEDs, much effort has been focused on improving current pc-WLED phosphors and developing novel pc-WLED phosphors recently. This review article concerns commonly used rare earth ion (Eu(2+) and Ce(3+)) activated inorganic phosphors, highlighting the important effect of spectral tuning via local structural variations on improving the luminescence performance of phosphors. The main spectral tuning strategies are discussed in detail and summarized, including (1) doping level control; (2) cationic substitution; (3) anionic substitution; (4) cationic-anionic substitution; (5) the crystal-site engineering approach; (6) mixing of nanophases.
如今,由于其优越的寿命、效率和可靠性以及显著降低的功耗,磷光转换白光发光二极管(pc-WLED)已广泛应用于固态照明和显示领域。荧光粉是 pc-WLED 器件不可或缺的组成部分,其发光性能决定了 WLED 照明和显示的质量。为了进一步实现 pc-WLED 中的高光效、色度稳定性和显色性能,最近人们致力于改进现有 pc-WLED 荧光粉并开发新型 pc-WLED 荧光粉。本文综述了常用的稀土离子(Eu(2+)和 Ce(3+))激活的无机荧光粉,重点讨论了通过局部结构变化进行光谱调谐对改善荧光粉发光性能的重要作用。详细讨论并总结了主要的光谱调谐策略,包括(1)掺杂浓度控制;(2)阳离子取代;(3)阴离子取代;(4)阳离子-阴离子取代;(5)晶位工程方法;(6)纳米相混合。