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Synthesis of red phosphors NaLa(MoO4)2:Eu3+ by sol- gel method assisted by microwave and effect of doping PO4 3- on the structure and luminescent properties

机译:微波辅助溶胶凝胶法合成红色荧光粉NaLa(MoO4)2:Eu3 +以及掺杂PO4 3-对结构和发光性能的影响

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Red phosphors NaLa0.95Eu0.05(MoO4)2 have been synthesized by sol-gel method assisted bymicrowave. X-ray diffraction and fluorescence spectrophotometer were used to analyze and investigate the phase structure and luminescent properties of phosphors, respectively. The results show that the as-synthesized sample belongs to tetragonal scheelite-structure. The excitation spectrumofNaLa0.95Eu0.05(MoO4)2 is composed of twomajor parts: one is the broad band between 200 and 350 nm, which belongs to the charge transfer of Mo-O and Eu-O; the other consists of a series of sharp lines between 350 and 500 nm, ascribed to the f-f transition of Eu3+. The main emission peak is at 616 nm, which is ascribed to the transition of 5D0ï??®7F2 of Eu3 +. Moreover, the luminescent intensity of NaLa0.95Eu0.05(MoO4)2 can be greatly enhanced with incorporation of PO4 3- and charge compensator Li+.
机译:微波辅助溶胶凝胶法合成了红色荧光粉NaLa0.95Eu0.05(MoO4)2。用X射线衍射和荧光分光光度计分别分析和研究了荧光粉的相结构和发光性能。结果表明,合成后的样品属于四方白钨矿结构。 NaLa0.95Eu0.05(MoO4)2的激发光谱由两个主要部分组成:一个是200-350 nm之间的宽带,属于Mo-O和Eu-O的电荷转移;另一个是Mo-O和Eu-O的电荷转移。另一条由一系列介于350和500 nm之间的尖线组成,归因于Eu3 +的f-f跃迁。主发射峰在616 nm处,这归因于Eu3 +的5D0 ???? 7F2的跃迁。此外,通过掺入PO4 3-和电荷补偿剂Li +,可以大大提高NaLa0.95Eu0.05(MoO4)2的发光强度。

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