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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Intense and color-tunable upconversion luminescence of Er3+ doped and Er3+/Yb3+ co-doped Ba3Lu4O9 phosphors
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Intense and color-tunable upconversion luminescence of Er3+ doped and Er3+/Yb3+ co-doped Ba3Lu4O9 phosphors

机译:ER3 +掺杂和ER3 + / YB3 +共掺杂BA3LU4O9磷光体的强烈和颜色可调升高发光

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摘要

A series of novel Er3+ doped and Er3+/Yb3+ co-doped Ba3Lu4O9 phosphors were synthesized by a simple high-temperature solid-state reaction method. The crystal structure and morphology of the samples were identified by XRD and SEM analysis. Under 980 nm laser diode excitation, the green (at 537 nm and 560 nm) and red (at 660 nm) UC emission were observed, which could be attributed to the (H-2(11/2), S-4(3)/(2)) -> I-4(15/2) and F-4(9/2) -> I-4(15/2) transitions, respectively. The UC luminescence can be finely tuned from green to dark-yellow light to some extent by increasing Yb3+ doping concentration. The sintering temperature and doping concentration of Ba3Lu4-x-yO9: x Er3+, y Yb3+ were optimized to x = 0.1 and y = 0.6 at 1550 degrees C. The emission intensity ratio of Green/Red keeps declining monotonically with increasing Er3+ or Yb3+ concentration, which is due to the cross-relaxation effect and cooperative energy transfer between the two neighboring Er3+ ions-as well as back energy transfer from Er3+ to Yb3+ ions. Based on the pump power dependence and UC luminescence decay curves, the energy level diagram and the possible energy transfer mechanism of Er3+ doped as well as Er3+/Yb3+ co-doped system were investigated in detail. In addition, according to the energy gap law, the possibilities of non-radiative transition between parts of energy levels of Er3+ ions were calculated. (C )2017 Elsevier B.V. All rights reserved.
机译:通过简单的高温固态反应方法合成了一系列新型ER3 +掺杂和ER3 + / YB3 +共掺杂BA3LU4O9磷光体。通过XRD和SEM分析鉴定样品的晶体结构和形态。在980nm激光二极管激励下,观察到绿色(处于537nm和560nm)和红色(在660nm)的UC发射,这可能归因于(H-2(11/2),S-4(3 )/(2)) - > I-4(15/2)和F-4(9/2) - > I-4(15/2)过渡。通过增加Yb3 +掺杂浓度,可以将UC发光从绿色精细调谐到深黄色光线。 Ba3lu4-X-YO9:X ER3 +,Y YB3 +的烧结温度和掺杂浓度在1550℃下优化至X = 0.1和Y = 0.6。绿色/红色的发射强度比随着ER3 +或YB3 +浓度的增加,单调均匀地下降,这是由于两个相邻的ER3 +离子之间的横弛放宽效果和协作能量转移 - 以及从ER3 +到YB3 +离子的反能量转移。基于泵功率依赖性和UC发光衰减曲线,详细研究了ER3 +掺杂的能量水平图和可能的能量转移机制以及ER3 + / YB3 +共掺杂系统。另外,根据能量缺口法,计算ER3 +离子的部分能量水平部分之间的非辐射转变的可能性。 (c)2017年Elsevier B.V.保留所有权利。

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