Luminescence tuning of Ce3+,Pr3+ activated(Y,Gd)AGG system by band gap engineering and energy transfer
来源期刊:Journal of Rare Earths2020年第5期
论文作者:Yiyi Ou Weijie Zhou Fengkai Ma Chunmeng Liu Rongfu Zhou Fang Su Yan Huang Pieter Dorenbos Hongbin Liang
文章页码:514 - 522
摘 要:Tuning of phosphor luminescence properties,including the emission energy/intensity and thermal stability,is an important way to develop superior luminescent materials for diverse applications.In this work,we discuss the effect of band gap engineering and energy transfer on the luminescence properties of Ce3+or Pr3+ doped(Y,Gd)AGG systems,and analyze the underlying reasons for their different phenomena.By using VUV-UV excitation spectra and constructing VRBE schemes,the changes of host band structure,5 d excited level energies and emission thermal stability of Ce3+and Pr3+ with the incorporation of Gd3+ions were studied.In addition,the energy transfer dynamics was also investigated in terms of the luminescence decay curves.This work demonstrates a way to tune phosphor luminescence properties by combining band gap engineering and energy transfer tailoring and provides an inspiring discussion on the different results of Ce3+doping on the Ce3+and Pr3+emissions.
Yiyi Ou1,Weijie Zhou1,Fengkai Ma1,Chunmeng Liu1,Rongfu Zhou1,Fang Su1,Yan Huang2,Pieter Dorenbos3,Hongbin Liang1
1. MOE Key Laboratory of Bioinorganic and Synthetic Chemistry,KLGHEI of Environment and Energy Chemistry,School of Chemistry,Sun Yat-sen University2. Beijing Synchrotron Radiation Facility,Institute of High Energy Physics,Chinese Academy of Sciences3. Faculty of Applied Sciences,Delft University of Technology
摘 要:Tuning of phosphor luminescence properties,including the emission energy/intensity and thermal stability,is an important way to develop superior luminescent materials for diverse applications.In this work,we discuss the effect of band gap engineering and energy transfer on the luminescence properties of Ce3+or Pr3+ doped(Y,Gd)AGG systems,and analyze the underlying reasons for their different phenomena.By using VUV-UV excitation spectra and constructing VRBE schemes,the changes of host band structure,5 d excited level energies and emission thermal stability of Ce3+and Pr3+ with the incorporation of Gd3+ions were studied.In addition,the energy transfer dynamics was also investigated in terms of the luminescence decay curves.This work demonstrates a way to tune phosphor luminescence properties by combining band gap engineering and energy transfer tailoring and provides an inspiring discussion on the different results of Ce3+doping on the Ce3+and Pr3+emissions.
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