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Preparation and Luminescent Characteristics of LaPO_4∶Eu Nanoparticles and Nanowires 被引量:5

Preparation and Luminescent Characteristics of LaPO_4∶Eu Nanoparticles and Nanowires
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摘要 Nanoparticles and nanowires of LaPO 4: Eu phosphors were synthesized by hydrothermal method. Their luminescent properties including electronic transition, surface effect, and temperature-dependent luminescent characteristics were systemically studied and compared to the bulk powders. It can be concluded that in comparison with the bulk powders, the fluorescence intensity decreases in nanoparticles and nanowires, while the lifetime increases, indicating that the radiative transition rate decreases. The nonradiative transition rate in nanowires decreases than that in nanoparticles due to its decreased surface to volume ratio. The temperature-dependent experiments indicate that the thermal quenching in nanopowders becomes weaker than that in the bulk powders. Nanoparticles and nanowires of LaPO 4: Eu phosphors were synthesized by hydrothermal method. Their luminescent properties including electronic transition, surface effect, and temperature-dependent luminescent characteristics were systemically studied and compared to the bulk powders. It can be concluded that in comparison with the bulk powders, the fluorescence intensity decreases in nanoparticles and nanowires, while the lifetime increases, indicating that the radiative transition rate decreases. The nonradiative transition rate in nanowires decreases than that in nanoparticles due to its decreased surface to volume ratio. The temperature-dependent experiments indicate that the thermal quenching in nanopowders becomes weaker than that in the bulk powders.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2004年第1期57-62,共6页 稀土学报(英文版)
基金 Projectsupportedbythe"OneHundredTalentsProjectofChineseAcademyofSciences"andtheNationalNaturalScienceFoundationofChina ( 10 3 740 86and 10 2 740 83 )
关键词 optics lanthanum phosphate europium ion NANOPARTICLE NANOWIRE transition rate thermal quenching rare earths optics lanthanum phosphate europium ion nanoparticle nanowire transition rate thermal quenching rare earths
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