荧光粉
光致发光
化学
热稳定性
热的
化学工程
光电子学
热力学
有机化学
物理
工程类
作者
Chun Che Lin,Yi‐Ting Tsai,Hannah E. Johnston,Mu‐Huai Fang,Fengjiao Yu,Wuzong Zhou,Pamela S. Whitfield,Ye Li,Jing Wang,Ru‐Shi Liu,J. Paul Attfield
摘要
) mixture with the same average radius increases cation size variance, resulting in photoluminescence emission increases of 20-26% for the x = 1.5 sample relative to the x = 0 parent across the 25-200 °C range that spans WLED working temperatures. Cation disorder suppresses nonradiative processes through disruption of lattice vibrations and creates deep traps that release electrons to compensate for thermal quenching. Introduction of high levels of cation disorder may thus be a very useful general approach for improving the efficiency of luminescent materials.
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