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Luminescence and Microstructure of Sr2Mg(BO32 Doped with Eu

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【作者】 曹林刘行仁荆西平刘玉兰陈英

【Author】 Cao Lin 1*, Liu Xingren 2, Jing Xiping 3, Liu Yulan 1, Chen Ying 4 (1. Department of Material Physics, University of Science and Technology Beijing, Beijing 100083, China; 2. Fujian Joinluck Electronic Enterprise Co. Ltd., Fuzhou 350007, China; 3. College of Chemistry, Peking University, Beijing 100871, China; 4. Research School of Physical Sciences and Engineering, the Australian National University, Canberra, ACT 0200, Australia)

【机构】 Department of Material Physics University of Science and Technology Beijing Beijing 100083 ChinaFujian Joinluck Electronic Enterprise Co. Ltd. Fuzhou 350007 ChinaCollege of Chemistry Peking University Beijing 100871 ChinaDepartment of Material Physics University of Science and Technology Beijing Beijing 100083 ChinaResearch School of Physical Sciences and Engineering the Australian National University Canberra ACT 0200 Australia

【Abstract】 Sr2Mg(BO32 doped with Eu was synthesized respectively in air and weak reducing atmosphere (combustion of carbon particle), whose photoluminescence characteristics and structure were also studied at room-temperature. In air, the fluorescent body′s color was white for different synthesized temperatures. At room temperature, the sample was excited and showed red typical emission spectrum of Eu 3+ whose emission apex were sharp near 612 nm and emission spectrum was made up of the charge transformation band (CTB) of Eu 3+ and excitation spectrum of 4f→4f high energy level transition, then reached the area of VUV. However, under reducing atmosphere (combustion of carbon particles), the color of the sample yielded was yellow, whose color became deeper with increasing temperature and showed phase transition. Using UV excitation, the luminescence of yellow sample was very weak. In a complicated broad spectrum at visible light area,the red emission spectrum of Eu 2+ was not observed. Crystal structure and luminescence of the sample were completely different from the results of Diaz and Keszler. Two samples were prepared under oxidation and reducing atmosphere at high temperature, which were different on crystal structure and microstructure. By studying Sr2Mg(BO32∶Eu 3+ a series of directional faults or educts were found, because Eu 3+ ions substituted for Sr 2+ ions. However, microstructure of Sr2Mg(BO32∶Eu 2+ is more complicated, whose excitation spectrum might be excited by Eu 2+. By XRD patten of the samples, phase transition could be found. Twins and clusters that were formed from point defect such as interstitial atom and big angle crystal boundary could be found by TEM.

【关键词】 luminescenceboratemicrostructurerare earths
【Key words】 luminescenceboratemicrostructurerare earths
【基金】 NationalNatureScienceFoundationofChina(40072013)
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2005年S1期
  • 【分类号】O482.31
  • 【被引频次】2
  • 【下载频次】85
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