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Wet chemical synthesis and luminescence properties of erbium-doped nanocrystalline yttrium oxide

机译:掺nano纳米氧化钇的湿化学合成及发光性能

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摘要

The luminescence properties of nanocrystalline Y_2O_3:Er~(3+) prepared via wet chemical synthesis were investigated. A broadening of both the reflectance spectrum and 77 K luminescence spectrum (lambda_(exc) = 488 nm) was observed in the nanocrystalline material compared to bulk Y_2O_3:Er~(3+). The spectral broadening was attributed to the presence of Er~(3+) ions on the surface of the particle, which experienced different crystal fields than the ions buried in the core of the particle. Upconversion was observed in both the bulk and nanocrystal material following excitation with 650-nm or 800-nm radiation. Following excitation with 800-nm radiation, an enhancement of the red (~4F_(9/2) - > ~4I_(15/2)) upconverted emission was observed and occurred as a result of the (~4F_(9/2), ~4I_(11/2) - >(~4I_(13/2),4F_(9/2)) ion-pair process that directly populated the ~4F_(9/2)state. The magnitude of the red enhancement in the nanocrystalline material prepared via wet chemical synthesis was less than that of the identically doped bulk sample and less still than Y_2O_3:Er~(3+) nanocrystals prepared via a combustion synthesis technique. An explanation is proposed to account for the drastic difference in the red upconverted luminescence intensity.
机译:研究了湿法化学合成纳米晶Y_2O_3:Er〜(3+)的发光性质。与块状Y_2O_3:Er〜(3+)相比,在纳米晶体材料中观察到了反射光谱和77 K发光光谱的增宽(λ_(exc)= 488 nm)。光谱展宽归因于粒子表面上存在Er〜(3+)离子,该离子经历了与埋在粒子核心中的离子不同的晶体场。在650 nm或800 nm辐射激发后,在块状材料和纳米晶体材料中均观察到上转换。在用800 nm辐射激发后,观察到红色(〜4F_(9/2)->〜4I_(15/2))上转换后的发射增强,并且发生了(〜4F_(9/2) ,〜4I_(11/2)->(〜4I_(13/2),4F_(9/2))离子对过程直接填充〜4F_(9/2)状态。通过湿化学合成法制备的纳米晶材料比相同掺杂的块状样品要少,而通过燃烧合成技术制备的Y_2O_3:Er〜(3+)纳米晶仍要少,并提出了解释,以解释两者之间的巨大差异。红色上转换的发光强度。

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