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Lanthanide-doped Sr2YF7 nanoparticles: controlled synthesis, optical spectroscopy and biodetection

机译:Lanthanide-doped Sr2YF7纳米粒子:控制合成、光学光谱和biodetection

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摘要

Sr2YF7, as an important matrix for trivalent lanthanide (Ln~(3+)) ions to fabricate upconversion (UC) or downshifting (DS) phosphors, has been rarely reported. Herein, monodisperse and size-controllable tetragonal-phase Ln~(3+)-doped Sr2YF7 nanoparticles (NPs) were synthesized via a facile thermal decomposition method. Upon excitation at 980 nm, UC luminescence properties of Sr2YF7:Ln~(3+)/Yb~(3+) (Ln = Tm, Er) NPs were systematically surveyed. Particularly, after coating an inert Sr2YF7 shell, the UC luminescence intensities of Sr2YF7:Tm~(3+)/Yb~(3+) and Sr2YF7:Er~(3+)/Yb~(3+) NPs were enhanced by ~22 and 4 times, respectively. Furthermore, intense multicolor DS luminescence was also achieved in Ce~(3+)/Tb~(3+) or Eu~(3+) doped Sr2YF7 NPs, with absolute quantum yields of 55.1% (Tb~(3+)) and 11.2% (Eu~(3+)). The luminescence lifetimes of ~5D4 (Tb~(3+)) and ~5D0 (Eu~(3+)) were determined to be 3.7 and 8.1 ms, respectively. By utilizing the long-lived luminescence of Ln~(3+) in these Sr2YF7 NPs, we demonstrated their application as sensitive heterogeneous time-resolved photoluminescence bioprobes to detect the protein of avidin and the tumor marker of the carcinoembryonic antigen (CEA) with their limits of detection down to 40.6 and 94.9 pM, and thus reveal the great potential of these Sr2YF7:Ln~(3+) nanoprobes in cancer diagnosis.
机译:为三价Sr2YF7,作为一种重要的矩阵镧系元素(Ln ~(3 +)离子制造上转换(加州大学)或降低速度(DS)荧光粉,一直很少报道。和size-controllable tetragonal-phaseLn ~(3 +)再版Sr2YF7纳米颗粒(NPs)通过一个简单热分解合成方法。发光性能的Sr2YF7: Ln ~ (3 +) / Yb ~ (3 +)(Ln = Tm, Er) NPs是系统地调查。后,特别是涂层惰性Sr2YF7壳,加州大学的发光强度NPs被~ 22和增强4倍,分别。发光也取得了Ce ~(3 +) /结核病~ (3 +)或欧盟~(3 +)掺杂Sr2YF7 NPs与绝对的量子收益率55.1%(结核病~(3 +))和11.2%(欧盟~(3 +))。(结核病~ (3 +))~ 5 d0(欧盟~(3 +))测定分别是3.7和8.1 ms。长寿发光Ln ~(3 +)在这些Sr2YF7 NPs,我们展示了他们的应用程序敏感的异构时间分辨光致发光bioprobes检测蛋白质抗生物素蛋白和肿瘤的标记癌胚抗原(CEA)的限制检测到40.6和94.9点,因此揭示这些的巨大潜力Sr2YF7: Ln ~ (3 +) nanoprobes在癌症诊断。

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