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Synthesis of Spherical (Y,Gd)BO_3:Eu^(3+)Phosphor Using W/O Emulsion System

Synthesis of Spherical (Y,Gd)BO_3:Eu^(3+)Phosphor Using W/O Emulsion System
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摘要 Spherical (Y, Gd)BO3∶Eu 3+ phosphor particles with a narrow size distribution(2~4 μm) was obtained by firing the Y-Gd-Eu-BO3 precursor prepared in a W/O style emulsion system. In the W/O emulsion system, kerosene, used as oil phase, was mixed with Span 80 and Tween 80 compounds which were employed as the emulsifier with an HLB (hydrophile-lipophile balance) value of 5.2~5.3. Both rare earths (Y, Gd and Eu) nitrate and boric acid solution or ammonia solution were used as aqueous phase. The synthesis conditions, such as emulsion composition, emulsifying style, precipitation reaction process, reaction temperature, morphology control, and so on, were investigated, and the optimum synthesis conditions for preparing spherical (Y, Gd)BO3∶Eu 3+ phosphor was obtained. The phosphor was characterized by XRD, SEM, laser particle size analysis, emission and excitation spectrum under vacuum ultraviolet (VUV), and so on. The phosphor synthesized using the water-in-oil emulsion method with median diameter (D 50 ) of 2~4 μm shows agreeable photoluminescence (PL) property and sphericity. The main emission peak appears at about 593 nm, which corresponds to 5D0→7F1 transition (magnetic-dipole transition) of the Eu 3+ ion. The cell parameters and powder diffraction data were indexed. The structure of the phosphor belongs to the hexagonal system with space group P63/m. Spherical (Y, Gd)BO3:Eu^3+ phosphor particles with a narrow size distribution(2 -4 μm) was obtained by firing the Y-Gd-Eu-BO3 precursor prepared in a W/O style emulsion system. In the W/O emulsion system, kerosene, used as oil phase, was mixed with Span 80 and Tween 80 compounds which were employed as the emulsifier with an HLB (hydrophile-lipophile balance) value of 5.2- 5.3. Both rare earths (Y, Gd and Eu) nitrate and boric acid solution or ammonia solution were used as aqueous phase. The synthesis conditions, such as emulsion composition, emulsifying style, precipitation reaction process, reaction temperature, morphology control, and so on, were investigated, and the optimum synthesis conditions for preparing spherical (Y, Gd)BO3:Eu^3+ phosphor was obtained. The phosphor was characterized by XRD, SEM, laser particle size analysis, emission and excitation spectrum under vacuum ultraviolet (VUV), and so on. The phosphor synthesized using the water-in-oil emulsion method with median diameter (D50) of 2 - 4 μm shows agreeable photoluminescence (PL) property and sphericity. The main emission peak appears at about 593 nm, which corresponds to ^5D0→^7F1 transition (magnetic-dipole transition) of the Eu^3+ ion. The cell parameters and powder diffraction data were indexed. The structure of the phosphor belongs to the hexagonal system with space group P63/m.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第6期719-723,共5页 稀土学报(英文版)
基金 Project supported by National Hi-Tech . R&D Program of China (863 Program, 2002AA302604) , MOST of China(2006CB601104) ,and Synchrotron Radiation fund of Innovation Project of Ministry of Education (20041213S)
关键词 W/O乳液体系 等离子体平板显示屏 球形(Y Gd)BO3:Eu^3+磷颗粒 合成 稀土 光致发光性质 emulsion W/O PDP phosphor photoluminescence (PL) property VUV rare earths
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参考文献10

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