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首页> 外文期刊>Bulletin of Materials Science >Synthesis, characterization, photoluminescence and thermally stimulated luminescence investigations of orange red-emitting Sm3+-doped ZnAl2O4 phosphor
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Synthesis, characterization, photoluminescence and thermally stimulated luminescence investigations of orange red-emitting Sm3+-doped ZnAl2O4 phosphor

机译:掺杂橙红色的Sm3 +掺杂ZnAl2O4荧光粉的合成,表征,光致发光和热激发发光研究

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Sm3+-doped ZnAl2O4 phosphor was synthesized by citrate sol-gel method and characterized using X-ray diffraction and scanning electron microscopy to identify the crystalline phase and determine the particle size. Photoluminescence (PL) studies on the sample showed emission peaks at 563, 601, 646 and 707 nm with lambda (ex) = 230 nm corresponding to the (4)G(5/2) -> H-6(5/2), (4)G(5/2) -> H-6(7/2), (4)G(5/2) -> H-6(9/2) and (4)G(5/2) -> H-6(11/2) transitions, respectively, due to Sm3+ ions. PL lifetime decay studies confirmed that Sm3+ ions partly entered into the lattice by replacing Al3+ ions and remaining located at the surface of ZnAl2O4 host matrix. Thermally stimulated luminescence (TSL) studies of gamma-irradiated Sm3+-doped ZnAl2O4 sample showed two glow peaks at 440 and 495 K, the former being most intense than the latter. The trap parameters were determined using different heating rate methods. Spectral characteristics of the TSL glow showed emission around 565, 599 and 641 nm, indicating the role of Sm3+ ion as the luminescent centre. A probable mechanism for the prominent TSL glow peak, observed at 440 K, was proposed. CIE chromaticity coordinates for the system was evaluated, which suggested that Sm3+-doped ZnAl2O4 could be employed as a potential orange red-emitting phosphor.
机译:采用柠檬酸溶胶-凝胶法合成了掺杂Sm3 +的ZnAl2O4荧光粉,并利用X射线衍射和扫描电镜进行了表征,以鉴定结晶相并确定粒径。样品的光致发光(PL)研究显示在563、601、646和707 nm处有发射峰,λ(ex)= 230 nm对应于(4)G(5/2)-> H-6(5/2) ,(4)G(5/2)-> H-6(7/2),(4)G(5/2)-> H-6(9/2)和(4)G(5/2) ->由于Sm3 +离子,分别发生H-6(11/2)跃迁。 PL寿命衰减研究证实,Sm3 +离子通过替换Al3 +离子部分进入晶格,并保留在ZnAl2O4基质表面。 γ掺杂的Sm3 +掺杂的ZnAl2O4样品的热激发发光(TSL)研究显示,在440和495 K处有两个辉光峰,前者比后者最强。使用不同的加热速率方法确定阱参数。 TSL辉光的光谱特征显示出在565、599和641 nm处发射,表明Sm3 +离子作为发光中心。提出了在440 K下观察到的TSL辉光峰突出的可能机理。评估了系统的CIE色度坐标,这表明掺Sm3 +的ZnAl2O4可以用作潜在的发红光的磷光体。

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