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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A novel orange-yellow-emitting Ba_3Lu(PO_4)_3:Eu~(2+),Mn~(2+) phosphor with energy transfer for UV-excited white LEDs
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A novel orange-yellow-emitting Ba_3Lu(PO_4)_3:Eu~(2+),Mn~(2+) phosphor with energy transfer for UV-excited white LEDs

机译:新型的发射能量转移的新型橙色发射Ba_3Lu(PO_4)_3:Eu〜(2 +),Mn〜(2+)荧光粉,用于紫外激发白光LED

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摘要

Eu~(2+)-Mn~(2+) codoped orange-yellow-emitting Ba_3Lu(PO_4)_3 phosphors were synthesized by a solid-state reaction. The synthesis, structure refinement, and luminescence properties of the obtained phosphor were first investigated in detail. The crystal structure was refined with a split-atom model, where the oxygen atoms are distributed over two partially occupied sites. The refinement confirmed that BLuP:0.005Eu~(2+),0.06Mn~(2+) has a cubic unit cell with space group I43d (no. 220), cell parameters a = b = c = 10.4025 ? and Z = 4. The luminescent properties reveal that the developed phosphor can efficiently convert UV photons in a broad range from 230 to 430 nm into orange-yellow emission. On the basis of the luminescence spectra and fluorescence decay curves, we confirm that the energy transfer process from the Eu~(2+) to Mn~(2+) ions takes place in the codoped Ba3Lu(PO 4)3:Eu~(2+),Mn~(2+) phosphor, and the energy transfer efficiency increases with an increase in the Mn~(2+) content. The possible energy transfer mechanism was proposed in terms of the experimental results and analysis. In particular, our developed phosphor contains a larger amount of the red-emitting component, compared with the commercial YAG:Ce phosphor, possessing favorable properties for application in warm white LEDs with low correlated color temperature.
机译:通过固相反应合成了Eu〜(2 +)-Mn〜(2+)共掺杂的桔黄色发光Ba_3Lu(PO_4)_3荧光粉。首先详细研究了所得磷光体的合成,结构细化和发光性能。晶体结构采用分裂原子模型进行了精炼,其中氧原子分布在两个部分占据的位点上。细化证实BLuP:0.005Eu〜(2 +),0.06Mn〜(2+)具有一个立方晶胞,其空间群为I43d(编号220),晶胞参数a = b = c = 10.4025? Z =4。发光特性表明,开发的荧光粉可以有效地将230至430 nm宽范围内的UV光子转换为橙黄色发射光。根据发光光谱和荧光衰减曲线,我们确认从Eu〜(2+)到Mn〜(2+)离子的能量转移过程发生在共掺杂的Ba3Lu(PO 4)3:Eu〜( 2 +),Mn〜(2+)荧光粉,并且随着Mn〜(2+)含量的增加,能量转移效率也随之提高。通过实验结果和分析,提出了可能的能量传递机理。特别是,与商业化的YAG:Ce荧光粉相比,我们开发的荧光粉包含大量的红色发光成分,具有适用于相关色温低的暖白LED的良好性能。

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