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Preparation of Stable CaS∶Eu^(2+), Tm^(3+) Phosphor 被引量:2

Preparation of Stable CaS∶Eu^(2+), Tm^(3+) Phosphor
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摘要 Different fluxes were used to synthesize long persistence phosphors, calcium sulfides activated by Eu 2+ and Tm 3+ , by convenient solid state method. The phosphor using NH 4F as a flux has good crystallinity and large particle size, its stability against water and other atmospheric components is enhanced, and its afterglow is longer and fluorescent intensity is more intense than those of the phosphor using NH 4Cl as flux. Their PL intensities varied with time in moist air were measured, no remarkable change was found for those prepared with NH 4F flux in contrast with NH 4Cl as flux. So using NH 4F as flux is a good method to enhance the stability of alkaline earth sulfides. Different fluxes were used to synthesize long persistence phosphors, calcium sulfides activated by Eu 2+ and Tm 3+ , by convenient solid state method. The phosphor using NH 4F as a flux has good crystallinity and large particle size, its stability against water and other atmospheric components is enhanced, and its afterglow is longer and fluorescent intensity is more intense than those of the phosphor using NH 4Cl as flux. Their PL intensities varied with time in moist air were measured, no remarkable change was found for those prepared with NH 4F flux in contrast with NH 4Cl as flux. So using NH 4F as flux is a good method to enhance the stability of alkaline earth sulfides.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第5期501-504,共4页 稀土学报(英文版)
基金 ProjectsupportedbytheNationalNaturalScienceFoundationofChina ( 2 0 1710 46)andNaturalScienceFoundationofGuangdongProvince ( 2 14 2 3 45 2 )
关键词 optics PHOSPHOR CaS∶Eu 2+ Tm 3+ chemical stability FLUX rare earths optics phosphor CaS∶Eu 2+ , Tm 3+ chemical stability flux rare earths
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