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作 者:Yu Gao Jiayang Liao Mingyi Zhang Qingmei Tang Ting Zhou Mengjiao Liu Yan Zhao Xin Lai Daojiang Gao
机构地区:[1]College of Chemistry and Materials Science,Sichuan Normal University,Chengdu,610066,China
出 处:《Journal of Rare Earths》2024年第7期1224-1232,I0001,共10页稀土学报(英文版)
基 金:Project supported by the National Natural Science Foundation of China(62104164);Natural Science Foundation of Sichuan Province(2022NSFSC2001,2022NSFSC1212)。
摘 要:Red phosphor is an important component of the phosphor-converted white light-emitting diodes(pcWLEDs).The development of the novel red phosphor with excellent luminescence properties is of great significance for high performance WLEDs.In this study,NaGd_(0.4)Eu_(0.6)Mg_(1-x)Zn_(x)WO_(6)red phosphors with excellent luminescence properties were successfully synthesized and systematically investigated.Our results show that the Zn^(2+)-doping concentration has significant effect on the microstructures and luminescence properties of the NaGd_(0.4)Eu_(0.6)Mg_(1-x)Zn_(x)WO_(6)phosphors.The NaGd_(0.4)Eu_(0.6)Mg_(1-x)ZnxWO_(6)(0≤x≤0.7)samples are well crystallized pure solid solution sub-microcrystals,whereas the phase purity gradually decreases at 0.7<x≤1.0.The NaGd_(0.4)Eu_(0.6)Mg_(1-x)ZnxWO_(6)(0<x≤0.5)phosphors have stronger emissions than NaGd_(0.4)Eu_(0.6)MgWO_(6),and the optimized NaGd_(0.4)Eu_(0.6)Mg_(0.9)Zn_(0.1)WO_(6)phosphor possesses the best luminescence properties including thermal stability,CIE chromaticity coordinate,life time and quantum yield.The packaged WLED using NaGd_(0.4)Eu_(0.6)Mg_(0.9)Zn_(0.1)WO_(6)phosphor emits bright white light with higher CRI,lower CCT,and chromaticity coordinate close to the pure white light.The developed NaGd_(0.4)Eu_(0.6)Mg_(1-x)Zn_(x)WO_(6)phosphors have potential application in lighting and display.This work can offer an effective strategy for boosting luminescence properties of tungstate phosphors with the double perovskite structure.
关 键 词:Double perovskite Tungstate phosphor Zn^(2+)-doping MICROSTRUCTURE Luminescence Rare earths
分 类 号:TN312.8[电子电信—物理电子学] TQ422[化学工程]
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