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首页> 外文期刊>Optical Materials >Color-tunable luminescence in Y_(7(1-m-n-z))Bi_(7m)Dy_(7n)Eu_(7z)O_6F_9 (m = 0.001-0.05, n = 0-0.1, z = 0.005, 0.01) phosphors
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Color-tunable luminescence in Y_(7(1-m-n-z))Bi_(7m)Dy_(7n)Eu_(7z)O_6F_9 (m = 0.001-0.05, n = 0-0.1, z = 0.005, 0.01) phosphors

机译:Y_(7(1-m-n-z))Bi_(7m)Dy_(7n)Eu_(7z)O_6F_9(m = 0.001-0.05,n = 0-0.1,z = 0.005,0.01)荧光粉的颜色可调发光

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摘要

Luminescent materials composed of Y7(1-m-n-z)Bi7mDY7nEu7zO6F9 (m = 0.001-0.05, n = 0-0.1, z = 0.005, 0.01) were prepared using a flux-assisted solid-state reaction method. The X-ray diffraction patterns of the resultant phosphors were examined to index the peak positions. The excitation and emission spectra of Y7(1-m-n)Bi7mDy7nO6F9 (m = 0.01, n = 0; m = 0, n = 0.01; m = 0.01, n = 0.01) were investigated using photoluminescence (PL) spectroscopy. Critical emission quenching, as a function of B3+ or Dy3+ contents in Y7O6F9, was similarly observed at relatively low concentrations of both the activators. The dependence of the luminescent intensity of the Dy3+ co-doped (n = 0-0.1) host lattices on the Bi3+ content (m = 0.01) was also studied. Co-doping Dy3+ into the Bi3+-doped host structure enabled high energy transfer from Bi3+ to Dy3+; this energy transfer mechanism is discussed. Furthermore, the Y3+ ions in the lattice were replaced by Eu3+ ions in Y7(1-m-n)Bi7mDy7nO6F9 (m = 0.01, n = 0.01), and the diverse emission spectra by the energy-transfer and cooperation of Bi3+, Dy3+, and Eu3+ transitions and color Commission Internationale de l'Eclairage (CIE) coordinates were obtained. With these phosphors, the desired CIE values including emissions throughout blue, green, white, and red color regions of the spectra were achieved. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用助焊剂固态反应方法制备由Y7(1-m-n-z)Bi7mDY7nEu7zO6F9(m = 0.001-0.05,n = 0-0.1,z = 0.005,0.01)组成的发光材料。检查所得磷光体的X射线衍射图以标明峰位置。 Y7(1-m-n)Bi7mDy7nO6F9(m = 0.01,n = 0; m = 0,n = 0.01; m = 0.01,n = 0.01)的激发和发射光谱使用光致发光(PL)光谱进行了研究。在两种活化剂的浓度相对较低时,也观察到了临界发射猝灭,这是Y7O6F9中B3 +或Dy3 +含量的函数。还研究了Dy3 +共掺杂(n = 0-0.1)主体晶格的发光强度对Bi3 +含量(m = 0.01)的依赖性。将Dy3 +共掺杂到Bi3 +掺杂的主体结构中可以实现从Bi3 +到Dy3 +的高能量转移;讨论了这种能量传递机制。此外,晶格中的Y3 +离子被Y7(1-mn)Bi7mDy7nO6F9(m = 0.01,n = 0.01)中的Eu3 +离子取代,并且Bi3 +,Dy3 +和Eu3 +的能量转移和协同作用使发射光谱多样化转换和颜色委员会国际照明(CIE)坐标已获得。使用这些磷光体,可以获得所需的CIE值,包括光谱的整个蓝色,绿色,白色和红色区域的发射。 (C)2018 Elsevier B.V.保留所有权利。

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