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首页> 外文期刊>Journal of Nanophotonics >Structural and luminescent analysis of hafnium-doped yttrium oxide and yttrium-doped hafnium oxide powders and doped with trivalent europium and terbium ions
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Structural and luminescent analysis of hafnium-doped yttrium oxide and yttrium-doped hafnium oxide powders and doped with trivalent europium and terbium ions

机译:掺杂氧化钇氧化钇和钇掺杂的氧化铪粉的结构和发光分析,掺杂三价铕和铽离子

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In this work, the structural and luminescent properties of Y2O3 powders doped with different concentrations of hafnium and the HfO2 powders doped with different concentrations of yttrium are presented; these samples were also codoped with europium and terbium. The phosphors were obtained by means of the simple evaporation technique and were calcined at 800 degrees C for 2 h. The excitation and emission spectra of the rare earth (RE) codoped samples are interpreted in terms of the characteristic intraelectronic energy levels of the trivalent RE. The emission peak with maximum intensity for the samples containing europium ions occurs at 611 nm when these ions are excited at 243, 245, and 247 nm wavelengths; this emission is related with the D-5(0) to F-7(2) transition. Terbium codoped samples give a maximum emission intensity at 542 nm when samples are excited with the following wavelengths lambda(exc) = 274, 271, and 273 nm, transition taking place between the D-5(4) and F-7(5) energy levels. The XRD results for similar samples were analyzed, and it was observed that they have a crystalline structure corresponding to a cubic system and a 21.93-nm grain size calculated by means of the Scherrer's formula and the Williamson-Hall method; SEM analyzes showed spherical agglomerates for HfO2 samples, whereas Y2O3 showed porous laminar structures. Hafnium-doped yttrium oxide showed a combination of these structures as well as the Y2O3: Hf-3(+): Eu3+ codoped samples. The results for Y2O3 : Hf3+, Tb3+ showed leaflet and lamellar structures not reported before for this kind of material. The CIE diagram shows tone shifts in the red and green region for emissions of RE-doped yttrium oxide and hafnium oxide powders. (C) 2018 Society of Photo Optical Instrumentation Engineers (SPIE)
机译:在这项工作中,提出了掺杂有不同浓度的铪和掺杂有不同浓度的钇的掺杂浓度的Y2O3粉末的结构和发光性能;这些样品也与铕和铽共同分配。通过简单的蒸发技术获得磷光体,并在800℃下煅烧2小时。稀土(RE)编排样品的激发和发射光谱在三价RE的特征intraneLetive术语方面被解释。当这些离子在243,245和247nm波长下激发时,在611nm处发生含有铕离子的样品的最大强度的发射峰。该发射与D-5(0)至F-7(2)转变有关。当用以下波长λ(Exc)= 274,271,274,271nm,在D-5(4)和F-7(5)之间发生后,当样品激发样品时,铽编码样品在542nm处给出最大发射强度。能量水平。分析了类似样品的XRD结果,观察到它们具有对应于立方系统的结晶结构和通过Scherrer的公式和Williamson-Hall方法计算的21.93nm晶粒尺寸; SEM分析显示了HFO2样品的球形附聚物,而Y2O3显示多孔层状结构。氧化铪掺杂的氧化钇显示这些结构的组合以及Y2O3:HF-3(+):Eu3 +编码样品。 Y2O3:HF3 +,TB3 +显示出叶片和层状结构的结果未在此类材料之前报道。 CIE图显示了重新掺杂氧化钇和铪氧化物粉末的红色和绿色区域中的音调换档。 (c)2018年照片光学仪表工程师(SPIE)

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