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稀土发光材料在固体白光LED照明中的应用 总被引:25,自引:0,他引:25
固体白光发光二极管将成为21世纪新一代的节能光源. 要实现白光发射的重要途径之一是利用稀土发光材料的荧光转换技术, 把InGaN半导体管芯发射的460 nm蓝光或400 nm近紫外光转换成白光. 分别就这两种管芯报道了我们研制的发射蓝、绿、黄、红等不同颜色的稀土发光材料: YAG:Ce, Ca1-xSrxS:Eu^2+, Ga2S3:Eu^2+, MGa2S4:Eu^2+(M=Ca, Sr, Ba), SrGa^2+xS4+y:Eu^2+, (Ca1-xSrx)Se:Eu^2+, SrLaGa3S6O:Eu^2+, (M1, M2)10(PO4)6X2, (M1=Ca, Sr, Ba; M2=Eu, Mn; X=F, Cl, Br), NaEu0.92Sm0.08(MoO4)2, 并报道了由它们制成的白光发光二极管的色坐标、相关色温和显色指数等参数. 相似文献
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在还原气氛保护下利用高温固相法合成了化学组分为(M1,M2)10(PO4)6X2(M1=Ca,Sr,Ba;M2=Eu,Mn;X=F,Cl,Br)的可被紫光激发的蓝光、绿光和红光荧光粉,制备了紫光LED芯片+蓝光荧光粉+YAG荧光粉的二基色白光LED;紫光LED芯片+蓝光荧光粉+红光荧光粉的二基色白光LED,以及紫光LED芯片+蓝光荧光粉+绿光荧光粉+红光荧光粉的三基色白光LED。测试了所有制备的白光LED在不同的直流电驱动下的色度坐标、相关色温和显色指数。 相似文献
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CaF2:Ho3+/Yb3+ nano-particles with intense green up-conversion (UC) luminescence are successfully synthesized via a facile hydrothermal approach by using NH4F as the fluoride source and Na2EDTA as a chelating reagent. Powder X- ray diffraction (XRD), transmission electron microscopy (TEM), field emission scanning electron microscopy (FE-SEM), and UC emission spectra are used to characterize the structures, shapes, and luminescent properties of the samples. The effects from fluoride sources and chelating reagents on the formations of CaF2 nano-particles are investigated, and the for- mation process is also deduced. Under the excitation of a 980-nm laser diode, the samples each show a green up-conversion emission centered at 540 nm corresponding to the 5S2/5F4-+518 transitions of Ho3+. Moreover, the UC mechanisms of Ho3+/Yb3+ co-doped CaF2 nano-particles are also discussed. 相似文献
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采用溶胶-凝胶法合成了发光二极管(LED)用的系列红色荧光粉Li3Ba2Ln3-xEux(MoO4)8 (Ln=La, Gd, Y)。利用差热-热重(TG-DTA)分析和粉末X 射线衍射(XRD)测定了其最佳合成温度和不同温度下所得样品的结构,发现所有样品均具有单斜结构;采用荧光光谱对所得荧光粉发光性能进行了表征,发现在相同条件下所得样品的发光强度顺序为:Li3Ba2Y2.8Eu0.2(MoO4)8>Li3Ba2Gd2.8Eu0.2(MoO4)8>Li3Ba2La2.8Eu0.2-(MoO4)8。它们在395 nm和465 nm的激发光源激发时均有强的吸收,与LED芯片发射波长相匹配。同时分析了柠檬酸及分散剂聚乙二醇(PEG-10000)的用量、Eu3+离子的浓度以及焙烧温度等因素对荧光粉发光性能的影响。 相似文献