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作 者:丘志海[1] 林林[1] 龚慧[1] 陈海滨[1] 吴彬[1] 冯颖[1] 郑志强[1]
机构地区:[1]福建师范大学物理与光电信息科技学院,福建福州350007
出 处:《中国稀土学报》2011年第5期544-548,共5页Journal of the Chinese Society of Rare Earths
基 金:福建省科技重大专项课题(2007HJ0004-2);福建省大学生创新性实验计划项目(Fjnu2010-004);福建师范大学本科生课外科技计划项目(BKL2010-009)资助
摘 要:用高温固相法制备了Ca2MgSi2O7:Ce3+,Eu2+,并研究其发光特性。Ce3+的发射带峰值位于410 nm,对应于Ce3+的5d→4f跃迁;Eu2+的发射带峰值位于530 nm,对应于Eu2+的5d→4f跃迁。双掺样品的发射光谱表明两种离子间存在高效的电偶极-电偶极能量传递。当Ce3+和Eu2+浓度分别为2%和0.125%时,样品发射光谱(λex=360 nm)色坐标为(0.221,0.312),落在白光区。以上研究说明Ca2MgSi2O7:Ce3+,Eu2+是一种适用于近紫外芯片的新型WLED荧光粉,其光色可调谐。Ca2MgSi2O7:Ce3+,Eu2+ samples were prepared by the solid-state reaction. The luminescent properties of samples were also investigated. The Ce3+ -doped samples showed a broad emission band peaked at 410 nm which originated to the 5d→4f transition of Ce3+, while the emission band of Eu2+ doped ones centered at 530 nm was attributed to the 5d→4f transition of Eu2+. The emission spectra of codoped samples implied that there was effective dipoledipole energy transfer from Ce3+ to Ea2+ in The CIE chromaticity coordinate of emission of the co-doped sample was x = 0. 221, y = 0. 312 when the concentrations of Cc3+ and Eu2+ were 2% and 0. 125% , respectively. All of the above indicated that Ca2MgSi2O7:Ce3+,Eu2+ was a new kind of color-tunable WLED phosphor suitable for the near ultraviolet chips.
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