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Synthesis and Characterization of Nb2O5:La3+,Eu3+ Phosphors Obtained by the Non-Hydrolytic Sol-Gel Process

机译:非水解溶胶-凝胶法制备Nb2O5:La3 +,Eu3 +荧光粉的合成与表征

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The phosphor-converted light-emitting diode technique is an important solid-state illumination strategy. Sulfide-based materials are the most often employed red phosphors, but they are chemically unstable and present lower efficiency in comparison to the blue and green phosphors. Therefore, it is important to find a new red phosphor source that can emit intense red light while absorbing light in the near ultraviolet (UV) spectral region. This paper describes the photoluminescence properties of Nb2O5:La3+,Eu3+ obtained by the non-hydrolytic sol-gel process. The X-ray results indicated that the thermal treatment allowed to obtain the different crystalline structures such as, the orthorhombic and monoclinic phases for the Nb2O5 and the orthorhombic phase for the La2Nb10O28. This polymorphism was also confirmed by the Raman spectroscopy. The luminescence spectra revealed the existence of the Eu3+ ions in both crystalline phases for the samples annealed at higher temperature, depending of the excitation wavelength. The emission spectrum showed that increasing the annealing temperature promotes the narrowing of all intraconfigurational f-f transitions for the Eu3+ ions, due to the structural changes. In addition, all samples present good CIE (International Illumination Committee) chromaticity coordinates when excited in the UV (275 and 394 nm), blue (465 nm) and green (525 nm) radiation.
机译:磷光转换的发光二极管技术是重要的固态照明策略。硫化物基材料是最常使用的红色磷光体,但与蓝色和绿色磷光体相比,它们在化学上不稳定并且效率较低。因此,重要的是找到一种新的红色磷光体光源,该光源可发出强红色光,同时吸收近紫外(UV)光谱区域中的光。本文描述了通过非水解溶胶-凝胶法获得的Nb2O5:La3 +,Eu3 +的光致发光特性。 X射线结果表明,热处理允许获得不同的晶体结构,例如Nb2O5的斜方晶相和单斜晶相,La2Nb10O28的斜方晶相。拉曼光谱也证实了这种多态性。发光光谱表明,取决于激发波长,在较高温度下退火的样品在两个晶相中都存在Eu3 +离子。发射光谱表明,由于结构变化,提高退火温度会促使Eu3 +离子的所有构内f-f跃迁变窄。此外,当在紫外线(275和394 nm),蓝色(465 nm)和绿色(525 nm)辐射中激发时,所有样品均具有良好的CIE(国际照明委员会)色度坐标。

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