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稀土红色荧光粉SrZnO2∶Eu3+的发光性能
引用本文:贺香红,周健,李卫华,周全法.稀土红色荧光粉SrZnO2∶Eu3+的发光性能[J].无机化学学报,2006,22(9):1706-1710.
作者姓名:贺香红  周健  李卫华  周全法
作者单位:江苏技术师范学院化学化工学院,江苏省贵金属深加工技术及应用重点建设实验室,常州 213001,江苏技术师范学院化学化工学院,江苏省贵金属深加工技术及应用重点建设实验室,常州 213001,江苏技术师范学院化学化工学院,江苏省贵金属深加工技术及应用重点建设实验室,常州 213001,江苏技术师范学院化学化工学院,江苏省贵金属深加工技术及应用重点建设实验室,常州 213001
基金项目:江苏技术师范学院自然科学研究基金(No.KYY05039),上海市科技发展基金(No.0352nm082)资助项目。
摘    要:A series of novel luminescent materials, SrZnO2∶M (M=Eu3+, or Eu3+ + Li+) have been synthesized by high-temperature solid-state reaction. The structure and luminescence properties of SrZnO2∶Eu3+ phosphor were studied through XRD, photoluminescence and Raman spectroscopy. The excitation spectra show a broad intense band and a number of small peaks corresponding to the inner 4f-shell excitations of Eu3+ (the strongest one is at 395 nm for 7F0-5L6). After SrZnO2∶Eu3+ phosphor was co-doped with Li+ ions, its charge transfer band extended to longer wavelengths. This resulted in increase of luminescent quantum efficiency of the sample. SrZnO2∶Eu3+,Li+ phosphor can be efficiently excited by longer UV. From the fluorescence spectrum of SrZnO2∶Eu3+ phosphor, apart from transition emissions of 5D07FJ (J=0~4), the transition emissions from 5D17FJ (J=0~2) have been observed. For the SrZnO2∶Eu3+ phosphor, under excitation of UV, the dominant emission is at about 612 nm, due to the 5D07F2 hypersensitive transition. The incorporation of Li+ ions greatly enhanced the luminescence intensity and made emission peak from 5D07F2 transition red-shifted.

关 键 词:SrZnO2∶Eu3+荧光粉    铕离子    光致发光性能    红光    红移
文章编号:1001-4861(2006)09-1706-05
收稿时间:2006-04-12
修稿时间:2006-06-18

Luminescent Performance of Rare Earth SrZnO2:Eu3+ Red-emitting Phosphor Powder
HE Xiang-Hong,ZHOU Jian,LI Wei-Hua and ZHOU Quan-Fa.Luminescent Performance of Rare Earth SrZnO2:Eu3+ Red-emitting Phosphor Powder[J].Chinese Journal of Inorganic Chemistry,2006,22(9):1706-1710.
Authors:HE Xiang-Hong  ZHOU Jian  LI Wei-Hua and ZHOU Quan-Fa
Abstract:
Keywords:SrZnO2:Eu3  phosphor  Eu3  ion  photoluminescent performance  red-emitting  red-shift  
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