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首页> 外文期刊>RSC Advances >Effect of co-doping of alkali metal ions on Ca0.5RE1-x(MoO4)(2):xEu(3+) (RE = Y, La) phosphors with enhanced luminescence properties
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Effect of co-doping of alkali metal ions on Ca0.5RE1-x(MoO4)(2):xEu(3+) (RE = Y, La) phosphors with enhanced luminescence properties

机译:碱金属离子在Ca0.5re1-x(Moo4)(2)(Re = Y,La)荧光体具有增强的发光性质的影响的影响

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摘要

A series of Ca0.5RE1-x(MoO4)(2):xEu(3+),M+ (RE = Y, La; M = Li, K and Na) phosphors were synthesized by a facile hydrothermal method. X-ray diffraction suggested that these phosphors could be indexed to a scheelite tetragonal Ca0.5RE1-x(MoO4)(2) (RE = Y, La) phase with a space group of I4(1)/a with high purity. FESEM indicated the signs of bi-pyramid-like micro-architectures. Elemental mapping analysis provided evidence of the incorporation and uniform distribution of all the elements. X-ray photoelectron spectroscopy (XPS) confirmed the presence of all the elements. The PL properties of Ca0.5RE1-x(MoO4)(2):xEu(3+),M+ (RE = Y, La; M = Li, K and Na) phosphors were analysed extensively. The obtained results suggest that the characteristic red emission is due to the hypersensitive electric dipole D-5(0) -> F-7(2) transition. The emission intensity of Ca0.5RE1-x(MoO4)(2):xEu(3+),Na+ (RE = Y, La) is higher than Li+ and K+ co-doped Ca0.5RE1-x(MoO4)(2):xEu(3+) (RE = Y, La). This can be explained by the charge compensation effect. Judd-Ofelt theory was adopted to examine the photophysical properties. The luminescence decay time values were estimated. The CIE chromaticity co-ordinates were derived from the emission spectra and the values were found to be close to the NTSC standard values. Hence, the prepared phosphors are suitable for display applications.
机译:一系列Ca0.5Re1-X(Moo4)(2):XEU(3 +),M +(Re = Y,La; M = Li,K和Na)磷光体通过容易的水热方法合成。 X射线衍射表明,这些磷光体可以用具有高纯度的I4(1)/ A的空间组,将这些磷光体分解为单体四方Ca0.5Re1-x(Moo4)(2)(Re = Y,La)相。 FeSEM表示双金字塔状微型体系结构的迹象。元素映射分析提供了所有元素的掺入和均匀分布的证据。 X射线光电子能谱(XPS)证实了所有元素的存在。广泛分析了Ca0.5Re1-X(MOO4)(2)(2)的Pl性能(moo4)(2):XeU(3 +),M +(Re = Y,La; M = Li,K和Na)磷光体。所得结果表明特征红色发射是由于过敏电偶极D-5(0) - > F-7(2)转变。 Ca0.5re1-x(moo4)(2):XeU(3 +),Na +(Re = Y,La)的发射强度高于Li +和K +共掺杂Ca0.5Re1-x(Moo4)(2) :XEU(3+)(RE = Y,LA)。这可以通过电荷补偿效果来解释。采用Judd-ofelt理论来检查光物理性质。估计发光衰减时间值。 CIE色度协调源自发射光谱,发现该值接近NTSC标准值。因此,制备的磷光体适合于显示应用。

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