首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Absorption spectra, defect site distribution and upconversion excitation spectra of CaF2/SrF2/BaF2:Yb3+:Er3+ nanoparticles
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Absorption spectra, defect site distribution and upconversion excitation spectra of CaF2/SrF2/BaF2:Yb3+:Er3+ nanoparticles

机译:CAF2 / SRF2 / BAF2:YB3 +:ER3 +纳米粒子的吸收光谱,缺陷部位分布和上变化激发光谱:YB3 +:ER3 +纳米粒子

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We report studies of the Yb3+ site distribution in Er3+ co-doped upconverting alkaline earth fluoride nanoparticles using high-resolution absorption measurements. It is found that Yb3(+) single ion cubic (O-h) sites and preferentially formed clusters are the dominant centres for moderate dopant concentrations. At higher concentrations, and for larger particle sizes, a minority C-4v(F-) centre is also observed. Furthermore, the behaviour of Yb3+ cluster centres, whose primary absorption band is centred at 10205 cm(-1) (in near resonance with 980 nm laser diodes) was studied by tuning the metal cation in the host lattice from Ca2+ -> Sr2+ -> Ba2+. For co-doped materials, with heterogeneous cluster centres, Er3+ upconversion fluorescence was observed upon selective excitation of Yb3+, resulting in a strong visible emission from H-2(11/2), S-4(3/2) and F-4(9/2) multiplets. By monitoring the Er3+ fluorescence, whilst scanning a laser through the wavelength dependent Yb3+ absorption, we obtain an excitation spectrum for these heterogeneous cluster centres. Spectral features associated with excited state absorption as well as significant deviation from the linear absorption spectra are observed. (c) 2020 Elsevier B.V. All rights reserved.
机译:使用高分辨率吸收测量,我们报告了ER3 +共掺杂的碱土氟化物纳米粒子的YB3 +位点分布的研究。结果发现,Yb3(+)单离子立方(O-H)位点和优先形成的簇是中等掺杂剂浓度的主要中心。在较高的浓度下,对于较大的粒度,也观察到少数C-4V(F-)中心。此外,通过从CA2 + - > SR2 + - >在宿主晶格中调节金属阳离子,研究了主要吸收带以10205cm(-1)以10205cm(-1)(与980nm激光二极管的近共振)为中心的行为。 Ba2 +。对于共掺杂材料,在选择性激发YB3 +时观察到具有异质簇中心,在YB3 +的激发时观察到荧光,从而产生来自H-2(11/2),S-4(3/2)和F-4的强烈可见发射(9/2)多重。通过监测ER3 +荧光,虽然通过波长依赖性YB3 +吸收扫描激光,但是我们获得了这些异质簇中心的激发光谱。观察到与激发态吸收相关的光谱特征以及与线性吸收光谱的显着偏差。 (c)2020 Elsevier B.v.保留所有权利。

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