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首页> 外文期刊>Journal of materials science >Comparative study of the Eu~(3+) luminescence in the AGd_9(SiO_4)_6O_2 (A = Li, Na) red phosphor with high color purity and brightness
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Comparative study of the Eu~(3+) luminescence in the AGd_9(SiO_4)_6O_2 (A = Li, Na) red phosphor with high color purity and brightness

机译:具有高色纯度和高亮度的AGd_9(SiO_4)_6O_2(A = Li,Na)红色荧光粉中Eu〜(3+)发光的比较研究

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摘要

Novel red-emitting phosphors LiGd9(SiO4)(6)O-2:Eu3+ (LGSO:Eu3+) and NaGd9(SiO4)(6)O-2:Eu3+ (NGSO:Eu3+) were successfully synthesized via a high-temperature solid-state reaction. The phase formation of LGSO:Eu3+ and NGSO:Eu3+ phosphors were characterized by X-ray powder diffraction (XRD). The phosphor could be evidently excited by the near ultraviolet (NUV) light and blue light and then exhibited red light emission, which confirmed by the photoluminescence excitation (PLE) and emission (PL) spectra. According to the photoluminescence spectra, the emission peaks of LGSO:Eu3+ and NGSO:Eu3+ are mainly locate at 595 nm and 615 nm, which attribute to the D-5(0) -> F-7(1) and D-5(0) -> F-7(2) transitions of Eu3+. A comparative study of the optical properties of Eu3+ in the AGd(9)(SiO4)(6)O-2 (A = Li, Na) red phosphor shows that the optimum concentration of LGSO:Eu3+ phosphors x = 0.20 is less than that of NGSO:Eu3+, x = 0.50, and the emission intensity of the latter is always higher than the former at the same concentration. The ultraviolet-visible spectra indicated that both of hosts tend to absorb energy in the spectral range 200-350 nm, and the band gap of host and phosphor are calculated(LGSO = 3.80 eV, NGSO = 3.99 eV), and the doping of Eu3+ helps to reduce the band gap. The internal quantum efficiency (IQE) of LGSO:0.2Eu(3+) and NGSO:0.5Eu(3+) were 69.6% and 77.3%, respectively. The chromaticity coordinates of LGSO:0.2Eu(3+) and NGSO:0.5Eu(3+) were (0.638, 0.360) and (0.643, 0.356), which exhibited high color purity. On this basis, we come to a conclusion that the prepared phosphors enjoy tremendous potentials serve as red emitting phosphor for near ultraviolet white light emitting diodes (NUV WLEDs).
机译:通过高温固相法成功合成了新型的红色荧光粉LiGd9(SiO4)(6)O-2:Eu3 +(LGSO:Eu3 +)和NaGd9(SiO4)(6)O-2:Eu3 +(NGSO:Eu3 +)。状态反应。通过X射线粉末衍射(XRD)表征LGSO:Eu3 +和NGSO:Eu3 +荧光粉的相形成。磷光体可以被近紫外线(NUV)和蓝光明显激发,然后呈现红色发光,这由光致发光激发(PLE)和发射(PL)光谱证实。根据光致发光光谱,LGSO:Eu3 +和NGSO:Eu3 +的发射峰主要位于595 nm和615 nm,这归因于D-5(0)-> F-7(1)和D-5( 0)-> Eu-7 +的F-7(2)跃迁。对AGd(9)(SiO4)(6)O-2(A = Li,Na)红色荧光粉中Eu3 +的光学性质的比较研究表明,LGSO:Eu3 +荧光粉的最佳浓度x = 0.20小于最佳浓度。在相同浓度下,NGSO:Eu3 +的发射强度x = 0.50,后者的发射强度始终高于前者。紫外可见光谱表明,两种基质都倾向于吸收200-350 nm光谱范围内的能量,并计算出基质和磷的带隙(LGSO = 3.80 eV,NGSO = 3.99 eV),以及Eu3 +的掺杂有助于减小带隙。 LGSO:0.2Eu(3+)和NGSO:0.5Eu(3+)的内部量子效率(IQE)分别为69.6%和77.3%。 LGSO:0.2Eu(3+)和NGSO:0.5Eu(3+)的色度坐标为(0.638,0.360)和(0.643,0.356),具有较高的色纯度。在此基础上,我们得出的结论是,所制备的荧光粉具有巨大的潜力,可作为近紫外白光发光二极管(NUV WLED)的红色荧光粉。

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