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Upconversion Nanoparticle-Integrated Bilayer Inverse Opal Photonic Crystal Film for the Triple Anticounterfeiting

Zhipeng Meng, Yue Wu, Jie Ren, Xiyan Li, Shufen Zhang, Suli Wu

2022ACS Applied Materials & Interfaces38 citationsDOI

Abstract

Optical anticounterfeiting plays a vital role in information security because it can be recognized by the naked eye and is difficult to imitate. Herein, a hydrophilic modified upconversion nanoparticle (M-UCNP)-integrated bilayer inverse opal photonic crystal (IOPC) film was designed in which the luminescent M-UCNPs were deposited on the surface of the optimized bilayer structure with double photonic stop bands. The structure which can modulate light to produce structural colors can also enhance the upconversion luminescence (UCL) to improve the anticounterfeiting effect synergistically. On the one hand, the reflection colors from green to blue were observed in the specular angles on the front (540-layer) of the film. Meanwhile, the scattering colors under nonspecular angles from red to blue on the back (808-layer) appeared in the natural light. On the other hand, the bilayer structure in which the 808-layer functions as a "secondary excitation source" to improve the intensity of the excitation light on M-UCNPs and the 540-layer reflects the emission light of the M-UCNPs to enhance the UCL intensity endows the film with good night vision ability. Finally, the dual-mode structural colors and enhanced UCL of the patterned film work together to realize triple anticounterfeiting in banknotes.

Topics & Concepts

Materials scienceStructural colorationBilayerOptoelectronicsSpecular reflectionPhotonic crystalPhoton upconversionLuminescenceLayer (electronics)NanotechnologyReflection (computer programming)NanoparticleOpticsMembraneComputer scienceProgramming languageBiologyGeneticsPhysicsPhotonic Crystals and ApplicationsRandom lasers and scattering mediaLuminescence Properties of Advanced Materials
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