Institute of Low Temperature and Structure Research, Polish Academy of Sciences, ul. Okolna 2, PL-50-422 Wroclaw, Poland.
Nanotechnology. 2012 Apr 13;23(14):145705. doi: 10.1088/0957-4484/23/14/145705. Epub 2012 Mar 21.
Most of the synthesis routes of lanthanide-doped phosphors involve thermal processing which results in nanocrystallite growth, stabilization of the crystal structure and augmentation of luminescence intensity. It is of great interest to be able to transform the sample in a spatially localized manner, which may lead to many applications like 2D and 3D data storage, anti-counterfeiting protection, novel design bio-sensors and, potentially, to fabrication of metamaterials, 3D photonic crystals or plasmonic devices. Here we demonstrate irreversible spatially confined infrared-laser-induced annealing (LIA) achieved in a thin layer of dried colloidal solution of ultra-small ∼8 nm NaYF₄ nanocrystals (NCs) co-doped with 2% Er³⁺ and 20% Yb³⁺ ions under a localized tightly focused beam from a continuous wave 976 nm medium power laser diode excitation. The LIA results from self-heating due to non-radiative relaxation accompanying the NIR laser energy upconversion in lanthanide ions. We notice that localized LIA appears at optical power densities as low as 15.5 kW cm⁻² (∼354 ± 29 mW) threshold in spots of 54 ± 3 µm diameter obtained with a 10 × microscope objective. In the course of detailed studies, a complete recrystallization to different phases and giant 2-3 order enhancement in luminescence yield is found. Our results are highly encouraging and let us conclude that the upconverting ultra-small lanthanide-doped nanophosphors are particularly promising for direct laser writing applications.
大多数镧系掺杂荧光粉的合成路线都涉及热加工,这会导致纳米晶的生长、晶体结构的稳定和发光强度的增强。能够以空间局部的方式转化样品是非常有趣的,这可能导致许多应用,如 2D 和 3D 数据存储、防伪保护、新型设计生物传感器,并且可能制造超材料、3D 光子晶体或等离子体器件。在这里,我们证明了在一层薄薄的干燥胶体溶液中,可以实现不可逆的空间受限红外激光退火(LIA),该胶体溶液由超小的 ∼8nm NaYF4 纳米晶(NCs)组成,这些纳米晶共掺杂了 2%的 Er³⁺ 和 20%的 Yb³⁺ 离子,在局部紧密聚焦的连续波 976nm 中功率激光二极管激发下,形成一束激光。LIA 是由于非辐射弛豫伴随 NIR 激光能量上转换在镧系离子中产生的自热引起的。我们注意到,局部 LIA 出现在光密度低至 15.5kW/cm²(∼354±29mW)的阈值下,在使用 10×显微镜物镜获得的 54±3μm 直径的光斑中。在详细研究的过程中,发现完全再结晶到不同的相和发光强度增强 2-3 个数量级。我们的结果非常令人鼓舞,这让我们得出结论,上转换的超小镧系掺杂纳米荧光粉非常适合直接激光写入应用。