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In this paper, we reported a series of Eu(3+) activated Sr2La2MgW2O12 phosphors synthesized by the solid state reaction method. X-ray diffraction analysis revealed that Sr2La2MgW2O12 doped with Eu(3+) was pure phase. Upon the 464 nm light excitation, Sr2La2MgW2O12:Eu(3+) phosphors exhibited a red emission centered at 613 nm, originated from the (5)D0-(7)F2 transition of Eu(3+) ions. The optimum concentration of Eu(3+) for the highest luminescence was found to be 20 mol

作者:Jun, Huang;Shuangping, Yi;Yaomin, Deng;Jieqiang, Xian;Lu, Zhang

来源:Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy 2015 年 148卷

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作者:
Jun, Huang;Shuangping, Yi;Yaomin, Deng;Jieqiang, Xian;Lu, Zhang
来源:
Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy 2015 年 148卷
标签:
LED Phosphor Photoluminescence
In this paper, we reported a series of Eu(3+) activated Sr2La2MgW2O12 phosphors synthesized by the solid state reaction method. X-ray diffraction analysis revealed that Sr2La2MgW2O12 doped with Eu(3+) was pure phase. Upon the 464 nm light excitation, Sr2La2MgW2O12:Eu(3+) phosphors exhibited a red emission centered at 613 nm, originated from the (5)D0-(7)F2 transition of Eu(3+) ions. The optimum concentration of Eu(3+) for the highest luminescence was found to be 20 mol