Rare Earth Yb3+ Doped Gd2O3 Single Phase Nanophosphors: Structural, Morphological and Photoluminescence Studies

Jeena Tr, Raj Ame, M. Bououdina
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Abstract

In this paper, a report has been acclaimed on the structural, morphological and photoluminescence properties of the pure and Yb3+ (2, 5 and 10 wt %) doped gadolinium oxide nanophosphor, synthesized by the citrate-nitrate auto combustion method. The influence of doping concentration on the properties of the prepared phosphor was studied using different characterization techniques. Structural studies carried out using XRD revealed crystalline cubic phase for both the pure and doped Gd2O3 nanoparticles. The phase formation and purity were further confirmed from the FTIR spectra. Surface morphology was found using SEM analysis showed the clusters of tiny particles. Optical absorption measurements were recorded in the UV-Vis-NIR wavelength region and the optical band gap variations with dopant concentration were discussed. The probable mechanism for the visible PL emissions by Yb3+ doped Gd2O3 phosphors are explained by different transition phenomenon. Fluorescence lifetime along with energy transfer efficiency from Gd3+ to Yb3+ was determined.
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稀土Yb3+掺杂Gd2O3单相纳米荧光粉:结构、形态和光致发光研究
本文报道了用柠檬酸盐-硝酸盐自燃烧法合成的纯和掺Yb3+(2、5和10 wt %)的氧化钆纳米磷光体的结构、形态和光致发光性能。采用不同的表征技术,研究了掺杂浓度对制备的荧光粉性能的影响。利用XRD进行的结构研究表明,纯Gd2O3纳米颗粒和掺杂Gd2O3纳米颗粒均为立方晶相。FTIR光谱进一步证实了其相的形成和纯度。通过扫描电镜分析发现,表面形貌为微小颗粒簇状。记录了紫外-可见-近红外波段的光吸收测量,讨论了光学带隙随掺杂剂浓度的变化。不同的跃迁现象解释了Yb3+掺杂Gd2O3荧光粉发射可见PL的可能机理。测定了荧光寿命和从Gd3+到Yb3+的能量转移效率。
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