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Three-dimensional printing of photonic colloidal glasses into objects with isotropic structural color

Author

Listed:
  • Ahmet F. Demirörs

    (ETH Zurich)

  • Erik Poloni

    (ETH Zurich
    University of Stuttgart)

  • Maddalena Chiesa

    (ETH Zurich)

  • Fabio L. Bargardi

    (ETH Zurich)

  • Marco R. Binelli

    (ETH Zurich)

  • Wilhelm Woigk

    (ETH Zurich)

  • Lucas D. C. Castro

    (ETH Zurich
    Federal University of São Carlos, Department of Materials Engineering
    University of São Paulo)

  • Nicole Kleger

    (ETH Zurich)

  • Fergal B. Coulter

    (ETH Zurich)

  • Alba Sicher

    (ETH Zurich)

  • Henning Galinski

    (ETH Zurich)

  • Frank Scheffold

    (University of Fribourg)

  • André R. Studart

    (ETH Zurich)

Abstract

Structural color is frequently exploited by living organisms for biological functions and has also been translated into synthetic materials as a more durable and less hazardous alternative to conventional pigments. Additive manufacturing approaches were recently exploited for the fabrication of exquisite photonic objects, but the angle-dependence observed limits a broader application of structural color in synthetic systems. Here, we propose a manufacturing platform for the 3D printing of complex-shaped objects that display isotropic structural color generated from photonic colloidal glasses. Structurally colored objects are printed from aqueous colloidal inks containing monodisperse silica particles, carbon black, and a gel-forming copolymer. Rheology and Small-Angle-X-Ray-Scattering measurements are performed to identify the processing conditions leading to printed objects with tunable structural colors. Multimaterial printing is eventually used to create complex-shaped objects with multiple structural colors using silica and carbon as abundant and sustainable building blocks.

Suggested Citation

  • Ahmet F. Demirörs & Erik Poloni & Maddalena Chiesa & Fabio L. Bargardi & Marco R. Binelli & Wilhelm Woigk & Lucas D. C. Castro & Nicole Kleger & Fergal B. Coulter & Alba Sicher & Henning Galinski & Fr, 2022. "Three-dimensional printing of photonic colloidal glasses into objects with isotropic structural color," Nature Communications, Nature, vol. 13(1), pages 1-9, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-32060-2
    DOI: 10.1038/s41467-022-32060-2
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    References listed on IDEAS

    as
    1. Dimitri Kokkinis & Manuel Schaffner & André R. Studart, 2015. "Multimaterial magnetically assisted 3D printing of composite materials," Nature Communications, Nature, vol. 6(1), pages 1-10, December.
    2. Richard O. Prum & Rodolfo H. Torres & Scott Williamson & Jan Dyck, 1998. "Coherent light scattering by blue feather barbs," Nature, Nature, vol. 396(6706), pages 28-29, November.
    3. Pete Vukusic & J. Roy Sambles, 2003. "Photonic structures in biology," Nature, Nature, vol. 424(6950), pages 852-855, August.
    4. Wang Zhang & Hao Wang & Hongtao Wang & John You En Chan & Hailong Liu & Biao Zhang & Yuan-Fang Zhang & Komal Agarwal & Xiaolong Yang & Anupama Sargur Ranganath & Hong Yee Low & Qi Ge & Joel K. W. Yang, 2021. "Structural multi-colour invisible inks with submicron 4D printing of shape memory polymers," Nature Communications, Nature, vol. 12(1), pages 1-8, December.
    5. Yejing Liu & Hao Wang & Jinfa Ho & Ryan C. Ng & Ray J. H. Ng & Valerian H. Hall-Chen & Eleen H. H. Koay & Zhaogang Dong & Hailong Liu & Cheng-Wei Qiu & Julia R. Greer & Joel K. W. Yang, 2019. "Structural color three-dimensional printing by shrinking photonic crystals," Nature Communications, Nature, vol. 10(1), pages 1-8, December.
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