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Bioinspired thermadapt shape-memory polymer with light-induced reversible fluorescence for rewritable 2D/3D-encoding information carriers

Author

Listed:
  • Jinhui Huang

    (Southwest Jiaotong University
    Southwest Jiaotong University)

  • Yue Jiang

    (Southwest Jiaotong University
    Southwest Jiaotong University)

  • Qiuyu Chen

    (Southwest Jiaotong University
    Southwest Jiaotong University)

  • Hui Xie

    (Southwest Jiaotong University
    Southwest Jiaotong University)

  • Shaobing Zhou

    (Southwest Jiaotong University
    Southwest Jiaotong University)

Abstract

Fluorescent materials have attracted widespread attention for information encryption owing to their stimuli-responsive color-shifting. However, the 2D encoding of fluorescent images poses a risk of information leakage. Herein, inspired by the mimic octopus capable of camouflage by changing colors and shapes, we develop a thermadapt shape-memory fluorescent film (TSFF) for integrating 2D/3D encoding in one system. The TSFF is based on anthracene group with reversible photo-cross-linking and poly (ethylene-co-vinyl acetate) network with thermadapt shape-memory properties. The reversible photo-cross-linking of anthracene is accompanied by repeatable fluorescence-shifting and enables rewritable 2D encoding. Meanwhile, the thermadapt shape-memory properties not only enables the reconfiguration of the permanent shape for creating and erasing 3D patterns, i.e., rewritable 3D information, but also facilitates recoverable shape programming for 3D encoding. This rewritable 2D/3D encoding strategy can enhance information security because only designated inspectors can decode the information by providing sequential heating for shape recovery and UV exposure. Overall, TSFF capable of rewritable 2D/3D encoding will inspire the design of smart materials for high-security information carriers.

Suggested Citation

  • Jinhui Huang & Yue Jiang & Qiuyu Chen & Hui Xie & Shaobing Zhou, 2023. "Bioinspired thermadapt shape-memory polymer with light-induced reversible fluorescence for rewritable 2D/3D-encoding information carriers," Nature Communications, Nature, vol. 14(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-42795-1
    DOI: 10.1038/s41467-023-42795-1
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    References listed on IDEAS

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    1. Xuyue Guo & Peng Li & Jinzhan Zhong & Dandan Wen & Bingyan Wei & Sheng Liu & Shuxia Qi & Jianlin Zhao, 2022. "Stokes meta-hologram toward optical cryptography," Nature Communications, Nature, vol. 13(1), pages 1-9, December.
    2. Guogao Zhang & Wenjun Peng & Jingjun Wu & Qian Zhao & Tao Xie, 2018. "Digital coding of mechanical stress in a dynamic covalent shape memory polymer network," Nature Communications, Nature, vol. 9(1), pages 1-7, December.
    3. Inki Kim & Jaehyuck Jang & Gyeongtae Kim & Jihae Lee & Trevon Badloe & Jungho Mun & Junsuk Rho, 2021. "Pixelated bifunctional metasurface-driven dynamic vectorial holographic color prints for photonic security platform," Nature Communications, Nature, vol. 12(1), pages 1-9, December.
    4. Zhao Gao & Yifei Han & Feng Wang, 2018. "Cooperative supramolecular polymers with anthracene‒endoperoxide photo-switching for fluorescent anti-counterfeiting," Nature Communications, Nature, vol. 9(1), pages 1-9, December.
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