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首页> 外文期刊>New Journal of Chemistry >Salt-assisted size-controlled synthesis and luminescence studies of single phase CaWO4:Dy3+: an insight into its morphological evolution, energy transfer and colour evaluation
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Salt-assisted size-controlled synthesis and luminescence studies of single phase CaWO4:Dy3+: an insight into its morphological evolution, energy transfer and colour evaluation

机译:单相Cawo4:DY3 +的盐辅助尺寸控制合成和发光研究:对其形态学进化,能量转移和颜色评估的洞察

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Although there are literature reports available on the use of salt as a flux in the solid state synthesis of phosphors, there are not many reports on the synthesis of nanophosphors using a salt-assisted wet chemical method. Here, we report the synthesis of a nearly spherical single phase CaWO4:Dy3+ nanophosphor using a solvothermal method with the addition of NH4Cl and KCl. It was observed that the addition of salt has no adverse effects on the crystal structure of the nanophosphor, however, it increases its size. A plausible explanation for the variation in size of the particles upon the addition of salt is presented. The photoluminescence emission, energy transfer and lifetimes of the nanophosphor were found to be dependent on its size. The blue emission from the host increases with increasing size. The average lifetime of the 480 nm (F-4(9/2) -> H-6(15/2)) emission for the as-prepared CaWO4:Dy3+ sample was found to be 1.628 ms, with the lifetime found to decrease with an increase in size. The CIE chromaticity indicates either bluish white or near white emission from the samples. The quantum yields of the various samples prepared were found to vary from 12 to 25%. Furthermore, the optimization of energy transfer was studied by changing the concentration of Dy3+ (3-15 at%) doping and Sm3+ (5 at%) codoping at 50 mM NH4Cl addition during synthesis. As the concentration of Dy3+ increases, the emission intensity decreases, whereas the energy transfer increases. Thus, this report will provide a significant contribution in the field of synthesis and optimizing of the luminescence characteristics of nanophosphors for display devices and optical imaging.
机译:虽然在使用盐在固态合成的磷光体中使用盐作为助焊剂的文献报告,但是在使用盐辅助湿化学方法的合成纳米膦的合成有很多报道。在这里,通过添加NH4Cl和KCl,使用溶剂热法报告几乎球形单相Cawo4:DY3 +纳米磷的合成。观察到盐的添加对纳米磷的晶体结构没有不利影响,然而,它增加了其尺寸。提出了在添加盐时颗粒尺寸变化的可粘合说明。发现纳米磷的光致发光发射,能量转移和寿命依赖于其尺寸。来自主体的蓝色发射随着较大尺寸的增加而增加。为制备的Cawo4:DY3 +样品的480nm(F-4(9/2) - > H-6(15/2))发射的平均寿命为1.628ms,寿命减少随着尺寸的增加。 CIE色度表示蓝色白色或近白色排放来自样品。发现制备的各种样品的量子产率从12-25%变化。此外,通过在合成期间以50mM NH 4Cl的加法改变Dy3 +(3-15at%)掺杂和Sm 3 +(5at%)的Sm 3 +(5at%)的浓度来研究能量转移的优化。随着DY3 +的浓度增加,发光强度降低,而能量转移增加。因此,本报告将在纳米级显示装置和光学成像的纳米级纳米膦的发光特性方面提供显着贡献。

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