Issue 21, 2023

Photoinduced polymer-confined CQDs for efficient photoluminescent 2D/3D printing applications

Abstract

CQD-loaded photopolymers were efficiently synthesized using commercially available materials in an easy one step process, combining the fast thermal decomposition of a carbon precursor with the direct integration into photopolymerizable acrylate formulations. Depending on the polymer matrix, the nanocomposites exhibited different optical properties as a result of their surface chemistry and dispersion state, while maintaining similar blue fluorescence in the 425–470 nm region. The CQD@triacrylate photoluminescent films showed the highest quantum yield (∼65%), most likely due to improved nanoparticle confinement inside the crosslinked network, compared to the diacrylate or co-polymer matrixes. The low viscosity of the monomer dispersions allowed them to be used as fluorescent inks for glass and textile coatings, 2D stenciling/stamping of various shapes or as photocurable resins for 3D printing in the near visible region. This provides promising future applications in optics, nanomedicine, sensing, anti-counterfeiting or textile functionalization.

Graphical abstract: Photoinduced polymer-confined CQDs for efficient photoluminescent 2D/3D printing applications

Article information

Article type
Paper
Submitted
12 Jun 2023
Accepted
08 Sep 2023
First published
18 Sep 2023
This article is Open Access
Creative Commons BY license

Mater. Adv., 2023,4, 5140-5148

Photoinduced polymer-confined CQDs for efficient photoluminescent 2D/3D printing applications

J. Plé, C. S. Stan, D. Zanghi, C. Genevois, S. Hajjar-Garreau and L. Balan, Mater. Adv., 2023, 4, 5140 DOI: 10.1039/D3MA00293D

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