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Ce3+、Tb3+激活的LaBO3的发光性能和能量传递

Luminescence and Energy Transfer of Ce3+ and Tb3+ in LaBO3

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【作者】 郭凤瑜刘念红

【Author】 GUO Fengyu, LIU Nianhong(Department of Chemistry)

【机构】 北京大学化学系北京大学化学系

【摘要】 本文系统地研究了在紫外光、阴极射线和X射线激发条件下Ce3+、Tb3+及Ce3+和Tb3+共激活的LaBO3体系的发光性能及组成对Ce3+和Tb3+发射强度的影响。结果表明:在254nm紫外光激发下Ce+3对Tb3+有良好的敏化作用;并确定了Ce3+→Tb3+的能量传送机理为偶极子—偶极子相互作用的共振传递;能量传送效率最高可达100%.在200nm紫外光、阴极射线和X射线激发条件下Ce3+对Tb3+的发光起猝灭作用。确定了在378nm紫外光激发条件下Tb3+在La1-yTbyBO3体系中的浓度猝灭机理为电偶极—电偶极相互作用。

【Abstract】 This paper reports the results of a systematic investigation on luminescent properties of Ce3+- and Tb3+- activated LaBO3 under the excitation of TV light,CR or X-ray. A detailed study of the influence of the composition on the intensity of Ce3+ and Th3+ emissions has also been presented. The concentration quenching of Tb3+ emission has-been studied too. We conclude that dipole-dipole interaction is the possible mechanism. Energy transfer from Ce3+ to Tb3+ is observed in the Ce3+ and Tb3+ codpped sample under the excitation of 254nm UV light. Our experimental results indicate that electrical multipolar interaction is the predominant mechanism for the energy transfer. The-maximal efficiency of the energy transfer approaches 100%. It means that La1-x-yCex, TbyBO3 is a better photoluminescent material. Under the excitation of CR and X-ray3, Tb3+ emission is quenching by Ce3+.

【关键词】 发光浓度猝灭能量传递LaBO3CeTb
【Key words】 LuminescenceEnergy traneferLaBO3CeniumTerbium
【基金】 国家自然科学基金
  • 【文献出处】 北京大学学报(自然科学版) ,Acta Scicentiarum Naturalum Universitis Pekinesis , 编辑部邮箱 ,1990年02期
  • 【被引频次】9
  • 【下载频次】88
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