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LaMgAl11O19: Mn2+和LaMgAl11O19:RE, Mn2+(RE=Eu2+, Gd3+)的发光特性
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Luminescence Properties of LaMgAl11O19:Mn2+ and LaMgAl11O19: RE, Mn2+(RE=Eu2+, Gd3+) under UV/VUV Excitation
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Natural Science Foundation of Gansu Province of China (3ZS051-A25-055)

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    摘要:

    以H3BO3作助熔剂,用高温固相法在1150 ℃、保温4 h的条件下成功制备了LaMgAl11O19:Mn的单相粉末样品并研究了其真空紫外光激发下的一系列发光特性。在紫外光(254 nm)激发下,LaMgAl11O19: Mn不发光;真空紫外光(147 nm)激发下,观察到Mn2+很强的3d5→3d44s的跃迁发光,峰值位于516 nm,结果表明,Mn2+的掺杂浓度在0.05 mol/mol时发光最强。为了继续增强LaMgAl11O19中Mn2+的发光强度,在固定Mn2+的浓度为0.05 mol/mol的

    Abstract:

    Using H3BO3 as a flux, LaMgAl11O19:Mn2+ and LaMgAl11O19:RE, Mn2+(RE=Eu2+, Gd3+) were synthesized by solid state reaction at 1150 ℃ for 4 h. The effect of Mn2+ on the luminescent properties excited by vacuum ultraviolet (VUV) was investigated. The strong emission spectrum excited by 147 nm is composed of peaks from Eu2+ and Mn2+ luminescence in LaMgAl11O19:(Eu2+, Mn2+ ) and only Mn2+ luminescence in LaMgAl11O19:Mn2+ and LaMgAl11O19:(Gd3+, Mn2+). The results show that the green emission of Mn2+ becomes stronger because of efficient energy transferring from Eu2+ and Gd3+ to Mn2+

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王博宇,徐进章,陈 昊,张志华. LaMgAl11O19: Mn2+和LaMgAl11O19:RE, Mn2+(RE=Eu2+, Gd3+)的发光特性[J].稀有金属材料与工程,2009,38(3):389~392.[Wang Boyu, Xu Jinzhang, Chen Hao, Zhang Zhihua. Luminescence Properties of LaMgAl11O19:Mn2+ and LaMgAl11O19: RE, Mn2+(RE=Eu2+, Gd3+) under UV/VUV Excitation[J]. Rare Metal Materials and Engineering,2009,38(3):389~392.]
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  • 收稿日期:2008-02-11
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