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Tunable multicolor upconversion emissions and paramagnetic property of monodispersed bifunctional lanthanide-doped NaGdF4 nanorods

机译:单分散双功能镧系掺杂的NaGdF4纳米棒的可调多色上转换发射和顺磁性能

摘要

In this paper, highly monodispsered ultrasmall hexagonal phase NaGdF4 nanorods were synthesized via a hydrothermal method using oleic acid as a stabilizing agent. The tunable multicolor upconversion (UC) emissions, including green, yellow, blue, and white emissions, can be readily achieved from lanthanide (Ln)-doped NaGdF4 nanorods under the excitation of a 980 nm diode laser. The calculated chromaticity coordinates (CIE-X = 0.346, CIE-Y = 0.357) are close to those of the standard white light (CIE-X = 0.33, CIE-Y = 0.33), and the white UC emissions can be tuned from blue-white to white by adjusting the doped contents of Ho3+ in the Yb3+/Tm3+/Ho3+ triply doped NaGdF4 nanorods. In addition, the ultrasmall NaGdF4 nanocrystals also exhibit paramagnetic properties at 293 K. The measured magnetizations of the NaGdF4:20%Yb3+/0.2% Er3+ and NaGdF4 nanocrystals were about 1.49 and 1.86 emu/g at 20 kOe, respectively, which were close to the reported values of other nanoparticles for bioseparation. Moreover, the NaGdF4 nanocrystals can be readily attracted by a small magnet, which shows it has potential application in cell isolating. It is expected that these multifunctional ultrasmall NaGdF4 nanorods including tunable UC colors and intrinsic paramagnetic properties may have potential applications in color displays, biolables, bioseparation, and magnetic resonance imaging.
机译:本文以油酸为稳定剂,通过水热法合成了高度单分散的超小六方相NaGdF4纳米棒。在980 nm二极管激光器的激发下,掺杂镧系(Ln)的NaGdF4纳米棒可轻松实现可调的多色上转换(UC)发射,包括绿色,黄色,蓝色和白色发射。计算得出的色度坐标(CIE-X = 0.346,CIE-Y = 0.357)接近于标准白光的色度坐标(CIE-X = 0.33,CIE-Y = 0.33),并且可以从蓝色调整白色UC发射-通过调整Yb3 + / Tm3 + / Ho3 +三重掺杂NaGdF4纳米棒中Ho3 +的掺杂含量,实现从白色到白色的转变。此外,超小NaGdF4纳米晶体在293 K时也表现出顺磁性。在20 kOe下,NaGdF4:20%Yb3 + / 0.2%Er3 +和NaGdF4纳米晶体的磁化强度分别约为1.49和1.86 emu / g。其他纳米颗粒用于生物分离的报道值。而且,NaGdF4纳米晶体很容易被小磁铁吸引,这表明它在细胞分离中具有潜在的应用。预计这些多功能的超小型NaGdF4纳米棒,包括可调的UC颜色和固有的顺磁性质,可能在彩色显示器,生物标签,生物分离和磁共振成像中具有潜在的应用。

著录项

  • 作者

    Ren G; Zeng S; Hao J;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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