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中空 La2O3:Ln(Ln = Yb/Er、Yb/Ho)微球的制备及上转换发光。

Preparation and up-conversion luminescence of hollow La2O3:Ln (Ln = Yb/Er, Yb/Ho) microspheres.

机构信息

Key Laboratory of Superlight Materials and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, PR China.

出版信息

Langmuir. 2011 May 3;27(9):5616-23. doi: 10.1021/la200506q. Epub 2011 Apr 11.

Abstract

Hollow La(2)O(3):Ln (Ln = Yb/Er, Yb/Ho) microspheres with up-conversion (UC) luminescence properties were successfully synthesized via a facile sacrificial template method by employing carbon spheres as hard templates followed by a subsequent heating process. The structure, morphology, formation process, and fluorescent properties are well investigated by various techniques. The results indicate that the hollow La(2)O(3):Ln microspheres can be well indexed to the hexagonal La(2)O(3) phase. The hollow La(2)O(3):Ln microspheres with uniform diameter of about 270 nm maintain the spherical morphology and good dispersion of the carbon spheres template. The shell of the hollow microspheres consists of numerous nanocrystals with the thickness of approximately 40 nm. Moreover, the possible formation mechanism of evolution from the carbon spheres to the amorphous precursor and to the final hollow La(2)O(3):Ln microspheres has also been proposed. The Yb/Er and Yb/Ho codoped La(2)O(3) hollow spheres exhibit bright up-conversion luminescence with different colors derived from different activators under the 980 nm NIR laser excitation. Furthermore, the doping concentration of the Yb(3+) is optimized under fixed concentration of Er(3+)/Ho(3+). This material may find potential applications in drug delivery, hydrogen and Li ion storage, and luminescent displays based on the uniform hollow structure, dimension, and UC luminescence properties.

摘要

具有上转换发光性能的空心 La(2)O(3):Ln(Ln=Yb/Er、Yb/Ho)微球通过简单的牺牲模板法成功合成,使用碳球作为硬模板,然后进行后续的加热过程。通过各种技术对其结构、形态、形成过程和荧光性能进行了很好的研究。结果表明,空心 La(2)O(3):Ln 微球可以很好地与六方相 La(2)O(3)相吻合。直径约为 270nm 的空心 La(2)O(3):Ln 微球保持着碳球模板的球形形态和良好的分散性。空心微球的壳由许多厚度约为 40nm 的纳米晶组成。此外,还提出了从碳球到非晶前体再到最终空心 La(2)O(3):Ln 微球的可能形成机制。Yb/Er 和 Yb/Ho 共掺 La(2)O(3)空心球在 980nmNIR 激光激发下表现出不同颜色的明亮上转换发光,这源于不同的激活剂。此外,在固定浓度的 Er(3+)/Ho(3+)下优化了 Yb(3+)的掺杂浓度。基于均匀的空心结构、尺寸和上转换发光性能,这种材料可能在药物输送、氢和锂离子存储以及发光显示方面有潜在的应用。

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