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Luminescence properties of a single-host phosphor Ba_(1.8-w)Sr_wLi_(0.4)SiO_4:Ce^(3+),Eu^(2+),Mn^(2+) for WLED 被引量:6

Luminescence properties of a single-host phosphor Ba_(1.8-w)Sr_wLi_(0.4)SiO_4:Ce^(3+),Eu^(2+),Mn^(2+) for WLED
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摘要 In order to obtain a single-host-white-light phosphor, a series of Bal.8 -x-y-zSrwLi0.4xCexEuyMnzSi04 (BSLS:Ce3+,Eu2+, Mn2+) powder samples were synthesized via high temperature solid-state reaction. The structure and photoluminescence properties were investigated. Under ultraviolet excitation, the emission spectra contained three bands: the 370-470 nm blue band, the 470-570 nm green band and the 570-700 nm red band, which arose from the 5d---4f transitions of Ce3+ and Eu2+, and the 4TI---6A1 transition of Mn2+, respectively. The excitation spectra of the emissions of Ce3+ and Mn2+ ions showed the energy transfer from Ce3+ to Mn2+. White light emission was obtained from the tri-doped samples of appropriate doping concentration under 31 0-360 nm excitation. In order to obtain a single-host-white-light phosphor, a series of Bal.8 -x-y-zSrwLi0.4xCexEuyMnzSi04 (BSLS:Ce3+,Eu2+, Mn2+) powder samples were synthesized via high temperature solid-state reaction. The structure and photoluminescence properties were investigated. Under ultraviolet excitation, the emission spectra contained three bands: the 370-470 nm blue band, the 470-570 nm green band and the 570-700 nm red band, which arose from the 5d---4f transitions of Ce3+ and Eu2+, and the 4TI---6A1 transition of Mn2+, respectively. The excitation spectra of the emissions of Ce3+ and Mn2+ ions showed the energy transfer from Ce3+ to Mn2+. White light emission was obtained from the tri-doped samples of appropriate doping concentration under 31 0-360 nm excitation.
机构地区 Department of Physics
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2013年第3期227-230,共4页 稀土学报(英文版)
基金 Project supported by National Natural Science Foundation of China (11074245,10904139,11204292)
关键词 photoluminescence barium strontium lithium silicate energy transfer single-host-white-light phosphor WLED rare earths photoluminescence barium strontium lithium silicate energy transfer single-host-white-light phosphor WLED rare earths
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