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Structure and Luminescent Properties of Co-doped Nanocrystalline Y_2O_3∶Eu 被引量:2

Structure and Luminescent Properties of Co-doped Nanocrystalline Y_2O_3∶Eu
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摘要 Nanocrystalline Y_2O_3∶Eu powders doped with different metal ions M (M: Li +,Na +,K +,Mg (2+),Sr (2+),Ba (2+),B (3+) and Al (3+)) were synthesized by glycine combustion. Their structure and luminescent properties were studied and compared with each other. The nanocrystalline Y_2O_3 were cubic in symmetry by XRD pattern. It can be concluded that co-doping can modify the size and crystallinity of nanoparticles. As a consequence,the luminescent properties such as the fluorescent intensity,lifetime of (() 5D_0)-(() 7F_2) and the location of charge transfer band (CT band) vary with co-dopants. The variation depends more strongly on the crystallinity of nanoparticles than the size. Especially,in Li +-doped Y_2O_3∶Eu nanoparticles,the emission intensity improves as large as three times than that of undoped ones. Nanocrystalline Y_2O_3∶Eu powders doped with different metal ions M (M: Li +,Na +,K +,Mg (2+),Sr (2+),Ba (2+),B (3+) and Al (3+)) were synthesized by glycine combustion. Their structure and luminescent properties were studied and compared with each other. The nanocrystalline Y_2O_3 were cubic in symmetry by XRD pattern. It can be concluded that co-doping can modify the size and crystallinity of nanoparticles. As a consequence,the luminescent properties such as the fluorescent intensity,lifetime of (() 5D_0)-(() 7F_2) and the location of charge transfer band (CT band) vary with co-dopants. The variation depends more strongly on the crystallinity of nanoparticles than the size. Especially,in Li +-doped Y_2O_3∶Eu nanoparticles,the emission intensity improves as large as three times than that of undoped ones.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第S1期33-36,共4页 稀土学报(英文版)
基金 ProjectsupportedbyNationalNaturealScienceFoundationofChina (3 93 814 6)
关键词 NANOCRYSTALLINE charge transfer band LIFETIME rare earths nanocrystalline charge transfer band lifetime rare earths
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