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首页> 外文期刊>Optical Materials >Upconversion luminescence properties of Y2O2S:Er3+@Y2O2S:Yb3+,Tm3+ core-shell nanoparticles prepared via homogeneous co-precipitation
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Upconversion luminescence properties of Y2O2S:Er3+@Y2O2S:Yb3+,Tm3+ core-shell nanoparticles prepared via homogeneous co-precipitation

机译:通过均相共沉淀制备的Y2O2S:Er3 + @ Y2O2S:Yb3 +,Tm3 +核壳纳米粒子的上转换发光性质

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The Y2O2S:Er3+@Y2O2S:Yb3+,Tm3+ core-shell upconversion (UC) nanoparticles with average diameter of 95 nm were synthesized by the homogeneous co-precipitation method combining with the solid-gas sulfidation route. The increases of nanocrystaline size after the shell coating was observed both in the X-ray diffraction (XRD) and transmission electron microscope (TEM) measurements. This indicates the composition homogeneity core-shell Y2O2S nanocrystals. Meanwhile, the luminescence of both the Er3+ and Tm3+ ions are realized for the first time in the novel core-shell Y2O2S:Er3+@Y2O2S:Yb3+,Tm3+ nanoparticles under the excitations of both 980 and 1550 nm. When excited by a 980 nm laser diode, the Y2O2S:Er3+@Y2O2S:Yb3+,Tm3+ phosphor exhibits blue (approximate to 475 nm), green (approximate to 548 nm) and red (approximate to 670 nm) emissions in the visible region, which correspond to the (1)G(4) -> H-3(6) transition of Tm(3+)ions, S-4(3/2), H-2(11/2) -> I-4(15/2) and F-4(9/2) -> I-4(15/2) transitions of Er3+ ions, respectively. The very strong emission at the near infrared (NIR) region is mainly due to the H-3(4) -> H-3(6) transition of Tm3+ ions. The emission from both of Era} and Tm3+ ions under 980 nm excitation reveals the energy transfers of Yb3+ -> Tm3+ within the shell layer and Yb3+ -> Er3+ between the shell and the core. When pumping at 1550 nm, although only Er3+ ions can efficiently absorb the excitation energy, the strong UC emissions from Tm3+ ions were also observed. This is owing to the energy transfer between the core and the shell through Er3+ -> Yb3+ -> Tm3+ ions. (C) 2016 Elsevier B.V. All rights reserved.
机译:采用均相共沉淀法结合固相硫化法合成了平均粒径为95 nm的Y2O2S:Er3 + @ Y2O2S:Yb3 +,Tm3 +核-壳上转换(UC)纳米粒子。在X射线衍射(XRD)和透射电子显微镜(TEM)测量中均观察到了壳涂层后纳米晶尺寸的增加。这表明组成均匀的核-壳Y 2 O 2 S纳米晶体。同时,在980和1550 nm的激发下,新型核-壳Y2O2S:Er3 + @ Y2O2S:Yb3 +,Tm3 +纳米粒子首次实现了Er3 +和Tm3 +离子的发光。当由980 nm激光二极管激发时,Y2O2S:Er3 + @ Y2O2S:Yb3 +,Tm3 +荧光粉在可见光区域显示蓝色(约475 nm),绿色(约548 nm)和红色(约670 nm)发射,对应于Tm(3+)离子(S-4(3/2),H-2(11/2)-> I-4的(1)G(4)-> H-3(6)跃迁Er3 +离子的(15/2)和F-4(9/2)→I-4(15/2)跃迁。在近红外(NIR)区域非常强的发射主要是由于Tm3 +离子的H-3(4)-> H-3(6)跃迁。在980 nm激发下来自Era}和Tm3 +离子的发射揭示了壳层内Yb3 +-> Tm3 +的能量转移以及壳与核之间Yb3 +-> Er3 +的能量转移。当在1550 nm泵浦时,尽管只有Er3 +离子可以有效吸收激发能,但也观察到了Tm3 +离子的强UC发射。这是由于通过Er3 +-> Yb3 +-> Tm3 +离子在核和壳之间进行了能量转移。 (C)2016 Elsevier B.V.保留所有权利。

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