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Upconversion luminescence in Ho3+/Yb3+- and Tb3+/Yb3+-codoped fluorogermanate glass and glass ceramic

机译:Ho3 + / Yb3 +-和Tb3 + / Yb3 +共掺杂的锗酸氟玻璃和玻璃陶瓷的上转换发光

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摘要

Energy-transfer excited upconversion luminescence in Ho3+/Yb3+- and Tb3+/Yb3+ -codoped PbGeO3-PbF2-CdF2 glass and glass-ceramic under infrared excitation is investigated. In Ho3+/Yb3+-codoped samples, green (545 nm), red (652 nm), and near-infrared (754 nm) upconversion emission corresponding to the S-5(2) (F-5(4)) -> I-5(8), F-5(5) -> I-5(8), and S-5(2)(F-5(4)) -> I-5(7) transitions, respectively, was observed. Blue (490 nm) emission assigned to the F-5(2,3) -> I-5(8) transition was also detected. In the Tb3+/Yb3+-codoped system, bright UV-visible emission around 384, 415, 438, 473-490, 545, 587, and 623 nm, identified as due to the D-5(3)((5)G(6)) -> F-7(J)(J = 6, 5, 4) and D-5(4) -> F-7(J)(J = 6, 5, 4, 3) transitions, was measured. The comparison of the upconversion process in glass ceramic and its glassy precursor revealed that the former samples present much higher upconversion efficiencies. The dependence of the upconversion emission upon pump power, and doping contents was also examined. The results indicated that successive energy-transfer between ytterbium and holmium ions and cooperative energy-transfer between ytterbium and terbium ions followed by excited-state absorption are the dominant upconversion excitation mechanisms herein involved. The viability of using the samples for three-dimensional solid-state color displays is also discussed. (c) 2007 Elsevier B.V. All rights reserved.
机译:研究了Ho3 + / Yb3 +-和Tb3 + / Yb3 +共掺杂的PbGeO3-PbF2-CdF2玻璃和玻璃陶瓷在红外激发下的能量转移激发上转换发光。在Ho3 + / Yb3 +掺杂的样品中,绿色(545 nm),红色(652 nm)和近红外(754 nm)上转换发射对应于S-5(2)(F-5(4))-> I分别观察到-5(8),F-5(5)-> I-5(8)和S-5(2)(F-5(4))-> I-5(7)过渡。还检测到分配给F-5(2,3)-> I-5(8)跃迁的蓝色(490 nm)发射光。在掺有Tb3 + / Yb3 +的系统中,384、415、438、473-490、545、587和623 nm附近有明亮的可见紫外线发射,这归因于D-5(3)((5)G( 6))-> F-7(J)(J = 6,5,4)和D-5(4)-> F-7(J)(J = 6,5,4,3)跃迁。对玻璃陶瓷及其玻璃状前体中上转换过程的比较表明,前者样品呈现出更高的上转换效率。还检查了上转换发射对泵浦功率和掺杂含量的依赖性。结果表明,herein和离子之间的连续能量转移以及和ter离子之间的协同能量转移以及随后的激发态吸收是本文涉及的主要上转换激发机理。还讨论了将样品用于三维固态彩色显示器的可行性。 (c)2007 Elsevier B.V.保留所有权利。

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