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Energy transfer and heat-treatment effect of photoluminescence in Eu3+-doped TbPO4 nanowires

机译:Eu3 +掺杂的TbPO4纳米线中光致发光的能量转移和热处理效应

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摘要

We have successfully synthesized EU-doped TbPO4 nanowires, which are orderly organized to form bundle-like structure. A thermal treatment up to 600 degrees C does not modify the size, shape and structure of as-synthesized sample. Due to the energy overlap between Tb3+ and Eu3+, an efficient energy transfer occurs from Tb3+ to Eu3+. The effects of Eu3+ concentration and thermal treatment on the luminescent properties of Eu3+ are investigated. The increase of Eu3+ concentration leads to the increase of the energy transfer efficiency from Tb3+ to Eu3+, but also enhances the probability of the interaction between neighboring Eu3+, which results in the concentration quenching. With the heat-treatment, the luminescence of Eu3+ presents an obvious increase, but almost no change for the luminescence of Tb3+. This difference is explained based on the TGA, DTA, and fluorescent decay dynamics analyses. (c) 2006 Elsevier Inc. All rights reserved.
机译:我们已经成功地合成了欧盟掺杂的TbPO4纳米线,它们有序地组织成束状结构。高达600摄氏度的热处理不会改变合成样品的尺寸,形状和结构。由于Tb3 +和Eu3 +之间的能量重叠,因此发生了从Tb3 +到Eu3 +的有效能量转移。研究了Eu3 +浓度和热处理对Eu3 +发光性能的影响。 Eu3 +浓度的增加导致从Tb3 +到Eu3 +的能量转移效率增加,但也增加了相邻Eu3 +之间相互作用的概率,从而导致浓度猝灭。通过热处理,Eu3 +的发光呈现明显的增加,但Tb3 +的发光几乎没有变化。基于TGA,DTA和荧光衰减动力学分析来解释这种差异。 (c)2006 Elsevier Inc.保留所有权利。

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