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Preparation of Non-Grinding Long Afterglow SrAl_2O_4:Eu^(2+), Dy^(3+) Material by Microwave Combustion Method 被引量:12

Preparation of Non-Grinding Long Afterglow SrAl_2O_4:Eu^(2+), Dy^(3+) Material by Microwave Combustion Method
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摘要 The non-grinding long afterglow material SrAl2O4:Eu^2+ , Dy^3+ was prepared by combustion method in home mierowave oven direetly, after dispersant, frother, eomburent, and mineralizer were added into the reacting system. XRD analysis showed that the powders were nearly pure SrAl2O4 phase with few other phases, and the size of the grain was 41.1 nm. Fluoreseenee speetrum results indieated that there were 2 exeitation peaks loeated at 345 and 400 nm, and the emission peak loeated at 516 nm, afterglow lasted up to 30 min or more. The mierowave eombustion method has advantages of less time, low temperature and no grinding process, and the material made by the method has good luminescent property. The non-grinding long afterglow material SrAl2O4:Eu^2+ , Dy^3+ was prepared by combustion method in home mierowave oven direetly, after dispersant, frother, eomburent, and mineralizer were added into the reacting system. XRD analysis showed that the powders were nearly pure SrAl2O4 phase with few other phases, and the size of the grain was 41.1 nm. Fluoreseenee speetrum results indieated that there were 2 exeitation peaks loeated at 345 and 400 nm, and the emission peak loeated at 516 nm, afterglow lasted up to 30 min or more. The mierowave eombustion method has advantages of less time, low temperature and no grinding process, and the material made by the method has good luminescent property.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第1期19-22,共4页 稀土学报(英文版)
基金 Project supported by the National Natural Science Foundation of China (20476002)
关键词 microwave combustion non-grinding long afterglow SrAl2O4 Eu^2 Dy^3 rare earths microwave combustion non-grinding long afterglow SrAl2O4 : Eu^2 + , Dy^3 + rare earths
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