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Multi-mode optical coded patterns enabled by upconversion nanoparticles and photonic crystals

机译:通过上转换纳米颗粒和光子晶体实现的多模光学编码图案

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摘要

In this study, we designed the luminescent enhanced composites by combining upconversion nanoparticles (UCNPs) and photonic crystals (PCs), and prepared multi-mode coding patterns through utilizing the optical properties of both materials, respectively. We prepared UCNPs with different luminescence and the composite materials can be quickly obtained by spin-coating the UCNPs on the surface of the PCs. We discover that the composite materials have significant luminescent enhancement and the enhancement of upconversion is attributed to the Bragg reflection of the photonic band gap. We fabricated upconversion luminescent lattices based on the surface of the PCs by dropping and endowed with the meaning of the Morse code so that it can have more information in different modes. In addition, we further obtained the cipher table pattern according to the structural color of the PCs and the luminescence of the UCNPs. The results reveal great potential applications in the field of multi-mode optical imaging and anti-counterfeiting.
机译:在该研究中,我们通过分别与使用两种材料的光学性质组合通过组合上转化纳米颗粒(UCNP)和光子晶体(PC)来设计发光增强的复合材料,并制备了多模编码图案。我们用不同的发光制备UCNP,可以通过在PC的表面上旋转UCNP来快速获得复合材料。我们发现复合材料具有显着的发光增强,并且上变化的增强归因于光子带隙的布拉格反射。我们通过丢弃并赋予摩尔斯电码的含义,根据PC的表面制作了上变发光格子,以便它可以具有不同模式的更多信息。另外,我们进一步根据PC的结构颜色和UCNP的发光来获得密码表图案。结果揭示了多模光学成像和防伪造领域的巨大潜在应用。

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