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首页> 外文期刊>CrystEngComm >Decrease in particle size and enhancement of upconversion emission through Y3+ ions doping in hexagonal NaLuF4:Yb3+/Er3+ nanocrystals
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Decrease in particle size and enhancement of upconversion emission through Y3+ ions doping in hexagonal NaLuF4:Yb3+/Er3+ nanocrystals

机译:通过掺杂六方NaLuF4:Yb3 + / Er3 +纳米晶体中的Y3 +离子,减小粒径并增强上转换发射

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摘要

The upconversion (UC) enhancement with size decrease has been realized through Y3+ ions doping in beta-NaLuF4:Yb3+/Er3+ nanocrystals (NCs) by a solvothermal process. X-Ray diffraction (XRD), scanning electron microscopy (SEM) and UC luminescence spectra were used to characterize the resulting samples. With an increase of the Y3+ doping concentration, the NCs size is continuously decreased with no phase transition. Meanwhile, the UC intensity is firstly increased and then it decreases when the Y3+ ions concentration is over 30 mol%. The NCs (beta-NaLu0.48Y0.3Yb0.2Er0.02F4) with the optimum Y3+ ions doping concentration (30 mol%) for UC emission have a diameter of about 80 nm. Compared with beta-NaLu0.78Yb0.2Er0.02F4 and beta-NaY0.78Yb0.2Er0.02F4 prepared under the same conditions, the green UC emission is enhanced by a factor of 1.8 and 16, respectively, for beta-NaLu0.48Y0.3Yb0.2Er0.0 F-2(4). The variation of the UC intensity with the increasing Y3+ ions concentration is attributed to the changing of the symmetry of the local crystal field induced by Y3+ ions doping, which has been proved by the structural probe Eu3+ ions. For beta-NaLu0.78Yb0.2Er0.02F4 and beta-NaLu0.48Y0.3Yb0.2Er0.02F4, a three-photon green UC process and a three-photon red UC process occur simultaneously at high pump power density, which can be described as (4)G(11)/(2) (Er3+) + I-4(15)/(2) (Er3+) -> H-2(11)/(2)/S-4(3)/(2) (Er3+) + I-4(13)/(2) (Er3+) and (4)G(11)/(2) (Er3+) + F-2(7)/(2) (Yb3+). F-4(9)/(2) (Er3+) + F-2(5)/(2) (Yb3+), respectively.
机译:通过溶剂热法通过在β-NaLuF4:Yb3 + / Er3 +纳米晶体(NCs)中掺杂Y3 +离子,实现了尺寸减小的上转换(UC)增强。使用X射线衍射(XRD),扫描电子显微镜(SEM)和UC发光光谱来表征所得样品。随着Y3 +掺杂浓度的增加,NCs尺寸连续减小而没有相变。同时,当Y 3+离子浓度超过30mol%时,UC强度首先增加,然后降低。具有用于UC发射的最佳Y 3+离子掺杂浓度(30mol%)的NC(β-NaLu0.48Y0.3Yb0.2Er0.02F4)的直径为约80nm。与在相同条件下制备的β-NaLu0.78Yb0.2Er0.02F4和β-NaY0.78Yb0.2Er0.02F4相比,β-NaLu0.48Y0的绿色UC排放分别提高了1.8和16倍。 3Yb0.2Er0.0 F-2(4)。 UC强度随Y3 +离子浓度的增加而发生变化,这归因于Y3 +离子掺杂引起的局部晶体场对称性的变化,这已由结构探针Eu3 +离子证明。对于beta-NaLu0.78Yb0.2Er0.02F4和beta-NaLu0.48Y0.3Yb0.2Er0.02F4,三光子绿色UC过程和三光子红色UC过程在高泵浦功率密度下同时发生,这可以描述为如(4)G(11)/(2)(Er3 +)+ I-4(15)/(2)(Er3 +)-> H-2(11)/(2)/ S-4(3)/( 2)(Er3 +)+ I-4(13)/(2)(Er3 +)和(4)G(11)/(2)(Er3 +)+ F-2(7)/(2)(Yb3 +)。 F-4(9)/(2)(Er3 +)+ F-2(5)/(2)(Yb3 +)。

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