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Sequential Growth of Uniform β-NaYF4@β-NaLnF4 (Ln = Y Lu Yb) Microcrystals with Luminescent Properties of Multicolor Tuning and Dual-Mode Emission

机译:具有多色调谐和双模发射发光特性的均匀β-NaYF4@β-NaLnF4(Ln = YLuYb)微晶的顺序生长

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摘要

We synthesized the uniform core-shell microstructured compounds with hexagonal phase NaYF4:Er/Yb microrods as the core and hexagonal phase NaLnF4 (NaYbF4, NaLuF4:Yb/Tm, NaYF4:Yb/Er, NaYF4:Eu) as the shell based on the hydrothermal reaction. These microscale core-shell structures provided a platform for the spatially confining optical process while possessing high luminescence efficiency. The thickness of the shell could be controlled by adjusting the amounts of shell precursor, which significantly affected the intensity of the shell dopant ions emission and the emission color of core-shell upconversion luminescence (UCL). The uniform NaYF4@NaLnF4 (Ln = Y, Lu, Yb) microrods, with a series of rare-earth ions doped into the core and shell layer at various doping concentrations, achieved color-tuning of the upconversion (UC) emission and dual-mode emission at the single-microcrystal level, thus allowing the efficient utilization of core-shell microcrystals in the photonics and security labeling. This study suggests a new class of luminescent materials in the microscopic field.
机译:我们基于六方相NaYF4:Er / Yb微棒为核心,六方相NaLnF4(NaYbF4,NaLuF4:Yb / Tm,NaYF4:Yb / Er,NaYF4:Eu)为壳,合成了均匀的核-壳微结构化合物。水热反应。这些微尺度的核壳结构为空间限制的光学过程提供了一个平台,同时具有很高的发光效率。壳的厚度可以通过调节壳前体的量来控制,这大大影响了壳掺杂离子的发射强度和核-壳上转换发光(UCL)的发射颜色。均匀的NaYF4 @ NaLnF4(Ln = Y,Lu,Yb)微棒,在不同的掺杂浓度下,将一系列稀土离子掺杂到核和壳层中,实现了上转换(UC)发射和双色的颜色调谐。在单微晶水平上发射模态,从而允许在光子学和安全标记中有效利用核壳微晶。这项研究提出了微观领域中的一类新的发光材料。

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