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首页> 外文期刊>ACS nano >Intense visible and near-infrared upconversion photoluminescence in colloidal LiYF_4:Er~(3+) nanocrystals under excitation at 1490 nm
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Intense visible and near-infrared upconversion photoluminescence in colloidal LiYF_4:Er~(3+) nanocrystals under excitation at 1490 nm

机译:1490 nm激发下LiYF_4:Er〜(3+)胶体纳米晶体的强烈可见光和近红外上转换光致发光

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摘要

We report intense upconversion photoluminescence (PL) in colloidal LiYF_4:Er~(3+) nanocrystals under excitation with telecom-wavelength at 1490 nm. The intensities of two- and three-photon anti-Stokes upconversion PL bands are higher than or comparable to that of the Stokes emission under excitation with low power density in the range 5-120 W/cm~2. The quantum yield of the upconversion PL was measured to be as high as ~1.2 ± 0.1%, which is almost 4 times higher than the highest upconversion PL quantum yield reported to date for lanthanide-doped nanocrystals in 100 nm sized hexagonal NaYF_4:Yb~(3+)20%, Er~(3+)2% using excitation at ~980 nm. A power dependence study revealed that the intensities of all PL bands have linear dependence on the excitation power density, which was explained by saturation effects in the intermediate energy states.
机译:我们报道了在1490 nm的电信波长激发下,胶体LiYF_4:Er〜(3+)纳米晶体中的强烈上转换光致发光(PL)。两光子和三光子反斯托克斯上转换PL带的强度高于或与在5-120 W / cm〜2的低功率密度激发下的斯托克斯发射的强度相当。经测量,上转换PL的量子产率高达〜1.2±0.1%,几乎是迄今为止报道的镧系掺杂纳米晶体在100 nm尺寸六角形NaYF_4:Yb〜中的最高上转换PL量子产率的近4倍。 (3+)20%,Er〜(3+)2%在〜980 nm激发。功率相关性研究表明,所有PL波段的强度都与激励功率密度线性相关,这可以通过中间能态的饱和效应来解释。

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