Suppr超能文献

Y2O3纳米晶粉末中Ln3+(Ln = Tb、Tm、Eu)的浓度猝灭与能量转移研究

[Study on concentration quenching and energy transfer in Ln3+ (Ln = Tb, Tm, Eu) in Y2O3 nanocrystal powders].

作者信息

Meng Qing-Yu, Chen Bao-Jiu, Xu Wu, Zhao Xiao-Xia, Yang Yan-Min, Di Wei-Hua, Wang Xiao-Jun

机构信息

School of Physics and Electronic Engineering, Harbin Normal University, Harbin 150025, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2009 Jan;29(1):151-5.

Abstract

Nano-powders Y2O3 with various particle sizes and different doping concentrations of Ln (Ln = Tb, Tm, Eu) were prepared by using a combustion technique. The bulky powders doped with concentrations corresponding to nano-powders were obtained by annealing the nano-powders at high temperature. The emission spectra, XRD spectra and TEM were used in the present study. The concentration quenching of luminescent centers and energy transfer between luminescent centers in Y2O3 : Ln nanocrystal powders were investigated. It was found that the behaviors of luminescence concentration quenching for 5D4 --> 7F5 : Tb3+ and 5D0 --> 7F2 : Eu3+ in nano-powders are similar to that in bulky powders. On the contrary, the quenching concentrations for 5D3 --> 7F5 : Tb3+ and 1D2 --> 3H4 : Tm3+ are distinctly higher than that in bulk powders. This owes to the size confinement effect: the interface of nanocrystal particles can stop a portion of the energy transfer, which happens in the bulk ones, between luminescent centers. The size confinement effect can bring different influences to the different types of energy transfer. For instance, it will restrain the energy transfer (governed by electric dipole-dipole interaction) between the ions in long distances, and will hardly affect the energy transfer (governed by exchange interaction) between the ions locating at near intervals.

摘要

采用燃烧法制备了不同粒径以及不同Ln(Ln = Tb、Tm、Eu)掺杂浓度的纳米Y2O3粉末。通过对纳米粉末进行高温退火,获得了与纳米粉末掺杂浓度相对应的块状粉末。本研究使用了发射光谱、XRD光谱和TEM。研究了Y2O3 : Ln纳米晶粉末中发光中心的浓度猝灭以及发光中心之间的能量转移。结果发现,纳米粉末中5D4 --> 7F5 : Tb3+和5D0 --> 7F2 : Eu3+的发光浓度猝灭行为与块状粉末中的相似。相反,5D3 --> 7F5 : Tb3+和1D2 --> 3H4 : Tm3+的猝灭浓度明显高于块状粉末中的。这归因于尺寸限制效应:纳米晶体颗粒的界面可以阻止块状粉末中发光中心之间发生的一部分能量转移。尺寸限制效应会给不同类型的能量转移带来不同的影响。例如,它会抑制远距离离子之间的能量转移(由电偶极 - 偶极相互作用控制),而对近距离离子之间的能量转移(由交换相互作用控制)几乎没有影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验