简介概要

Optical properties of NaY(MoO42:Eu3+ nanophosphors prepared by molten salt method

来源期刊:JOURNAL OF RARE EARTHS2019年第12期

论文作者:Lin Bai Qingyu Meng Mingxue Huo Yu Sui

文章页码:1261 - 1268

摘    要:We synthesized NaY(MoO42:Eu3+phosphors of different doping concentrations by a molten salt method.This facile way possesses advantages such as simple process,lower calcination temperature(350℃) and small particle size(70 nm).The crystal system is tetragonal phase and crystal lattice is body centered.The photo luminescence measurements including emission spectra,excitation spectra and fluorescence decay curves were carried out,elucidating that NaY(MoO42:Eu3+can be effectively excited by near UV and blue light.Moreover,it can be concluded that Eu3+energy transfer type is exchange interaction.Huang-Rhys factor and the critical energy transfer distance(Rc) were calculated to be 0.043 and 0.995 nm,respectively.Auzel’s model was used to obtain the intrinsic radiative transition lifetime of5 D0 level(τ0=0.923 ms).Furthermore,a calculation method was used to calculate refractive index n of nontransparent NaY(MoO42:1 mol% Eu3+phosphor,and n was obtained to be 1.86.

详情信息展示

Optical properties of NaY(MoO42:Eu3+ nanophosphors prepared by molten salt method

Lin Bai1,Qingyu Meng2,Mingxue Huo3,Yu Sui1

1. Department of Physics,Harbin Institute of Technology2. School of Physics and Electronic Engineering,Harbin Normal University3. Research Center of Basic Space Science,Harbin Institute of Technology

摘 要:We synthesized NaY(MoO42:Eu3+phosphors of different doping concentrations by a molten salt method.This facile way possesses advantages such as simple process,lower calcination temperature(350℃) and small particle size(70 nm).The crystal system is tetragonal phase and crystal lattice is body centered.The photo luminescence measurements including emission spectra,excitation spectra and fluorescence decay curves were carried out,elucidating that NaY(MoO42:Eu3+can be effectively excited by near UV and blue light.Moreover,it can be concluded that Eu3+energy transfer type is exchange interaction.Huang-Rhys factor and the critical energy transfer distance(Rc) were calculated to be 0.043 and 0.995 nm,respectively.Auzel’s model was used to obtain the intrinsic radiative transition lifetime of5 D0 level(τ0=0.923 ms).Furthermore,a calculation method was used to calculate refractive index n of nontransparent NaY(MoO42:1 mol% Eu3+phosphor,and n was obtained to be 1.86.

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