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Preparation of core-shell NaGdF_4 nanoparticles doped with luminescent lanthanide ions to be used as upconversion-based probes

机译:掺杂有发光镧系离子的核-壳NaGdF_4纳米粒子的制备用作基于上转换的探针

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Sodium gadolinium fluoride (NaGdF_4) is an ideal host material for the incorporation of luminescent lanthanide ions because of its high photochemical stability, low vibrational energy and its ability to mediate energy exchanges between the lanthanide dopants. This protocol describes the detailed experimental procedure for synthesizing core-shell NaGdF_4 nanoparticles that incorporate lanthanide ions into different layers for efficiently converting a single-wavelength, near-IR excitation into a tunable visible emission. These nanoparticles can then be used as luminescent probes in biological samples, in 3D displays, in solar energy conversion and in photodynamic therapy. The NaGdF_4 nanoparticles are grown through co-precipitation in a binary solvent mixture of oleic acid and 1-octadecene. Doping by lanthanides with controlled compositions and concentrations can be achieved concomitantly with particle growth. The lanthanide-doped NaGdF_4 nanoparticles then serve as seed crystals for subsequent epitaxial growth of shell layers comprising different lanthanide dopants. The entire procedure for the preparation and isolation of the core-shell nanoparticles comprising two epitaxial shell layers requires ~15 h for completion.
机译:氟化g钠(NaGdF_4)是掺入发光镧系元素离子的理想基质材料,因为它具有高的光化学稳定性,低的振动能以及介导镧系元素掺杂剂之间的能量交换的能力。该协议描述了用于合成将镧系元素离子掺入不同层的核-壳NaGdF_4纳米粒子的详细实验程序,以有效地将单波长,近红外激发转换为可调的可见光发射。然后,这些纳米颗粒可以用作生物样品,3D显示器,太阳能转换和光动力疗法中的发光探针。 NaGdF_4纳米颗粒通过在油酸和1-十八碳烯的二元溶剂混合物中共沉淀生长。镧系元素的掺杂和浓度的控制可以与颗粒的生长同时进行。然后,镧系元素掺杂的NaGdF_4纳米颗粒充当晶种,用于随后外延生长包含不同镧系元素掺杂剂的壳层。制备和分离包含两个外延壳层的核-壳纳米颗粒的整个过程需要约15小时才能完成。

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