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Luminescent Properties of Green Phosphor Ca_8Mg(SiO_4)_4Cl_2:Eu^(2+), Dy^(3+) for LED Applications 被引量:7

Luminescent Properties of Green Phosphor Ca_8Mg(SiO_4)_4Cl_2:Eu^(2+), Dy^(3+) for LED Applications
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摘要 The new phosphor calcium magnesium chlorosilicate, codoped with Eu^2+ and Dy^3+, was synthesized with the help of the high temperature solid state reaction in reducing atmosphere. The excitation and emission spectra were very similar to that of Ca8Mg(SiO4)4Cl2 :Eu^2+, and the Dy^3+ concentration influenced the emission intensity of this phosphor. The intensity of Eu^2+ and Dy^3+ codoped CMSC was stronger than that of Eu^2+ singly doped CMSC. The emission spectrum of the Dy^3+ ion overlapped the absorption band of the Eu^2+ ion, indicating that an energy transfer from Dy^3+ to Eu^2+ took place in CMSC:Eu^2+, Dy^3+ phosphor. The mechanism of the energy transfer from Dy^3+ tO Eu^2+, in this phosphor, might be resonant energy transfer. The new phosphor calcium magnesium chlorosilicate, codoped with Eu^2+ and Dy^3+, was synthesized with the help of the high temperature solid state reaction in reducing atmosphere. The excitation and emission spectra were very similar to that of Ca8Mg(SiO4)4Cl2 :Eu^2+, and the Dy^3+ concentration influenced the emission intensity of this phosphor. The intensity of Eu^2+ and Dy^3+ codoped CMSC was stronger than that of Eu^2+ singly doped CMSC. The emission spectrum of the Dy^3+ ion overlapped the absorption band of the Eu^2+ ion, indicating that an energy transfer from Dy^3+ to Eu^2+ took place in CMSC:Eu^2+, Dy^3+ phosphor. The mechanism of the energy transfer from Dy^3+ tO Eu^2+, in this phosphor, might be resonant energy transfer.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第5期573-577,共5页 稀土学报(英文版)
基金 Project supported by the National Natural Science Foundation of China (50372086) MOST of China (2006CB601104)
关键词 calcium magnesium chlorosilicate PHOSPHOR energy transfer Eu^2+ Dy^3+ rare earths calcium magnesium chlorosilicate phosphor energy transfer Eu^2+ Dy^3+ rare earths
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