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Single-phase full-color Ba_3Lu_2(SiO_4)_3:Eu^(2+) phosphor for white-light emitting diodes 被引量:1

Single-phase full-color Ba_3Lu_2(SiO_4)_3:Eu^(2+) phosphor for white-light emitting diodes
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摘要 we developed a new silicate-based full-color phosphor Ba3Lu2(SiO4)3:Eu2+ through solid state reaction.The host crystal structure was isostructural with Ca3Y2(SiO4)3 instead of garnet-type.The phosphor absorbed near-ultraviolet light from 250 to 400 nm,which was very suitable for a color converter of white LED that used UV-LED as the primary light source.The photoluminescence peak wavelength of Ba3Lu2(SiO4)3:Eu2+ was about 461 nm and a shoulder peak was around 522 nm,which resulted from the 5d-4f transition of the Eu2+.The optimum concentration of Eu2+ was 3.45 mol.% of Ba2+ content in Ba3Lu2(SiO4)3 host.It is a promising candidate for application in white LED as a white light converter. we developed a new silicate-based full-color phosphor Ba3Lu2(SiO4)3:Eu2+ through solid state reaction.The host crystal structure was isostructural with Ca3Y2(SiO4)3 instead of garnet-type.The phosphor absorbed near-ultraviolet light from 250 to 400 nm,which was very suitable for a color converter of white LED that used UV-LED as the primary light source.The photoluminescence peak wavelength of Ba3Lu2(SiO4)3:Eu2+ was about 461 nm and a shoulder peak was around 522 nm,which resulted from the 5d-4f transition of the Eu2+.The optimum concentration of Eu2+ was 3.45 mol.% of Ba2+ content in Ba3Lu2(SiO4)3 host.It is a promising candidate for application in white LED as a white light converter.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第11期1026-1028,共3页 稀土学报(英文版)
基金 Project supported by Natural Science Foundation of Jiangxi Province (2009GQC0042) Foundation of Jiangxi Educational Committee (GJJ10153) Major Science and Technology Project of Jiangxi Province (2010AZD00100) Foundation of Jiangxi University of Science and Technology (Jxxjzd10007)
关键词 Ba3Lu2(SiO4)3 white-light emitting diodes luminescent property rare earths Ba3Lu2(SiO4)3 white-light emitting diodes luminescent property rare earths
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