Zur Hauptnavigation wechseln Zur Suche wechseln Zum Hauptinhalt wechseln

Hidden Structural Colors from Bistable, Electrically Driven Covalent Organic Framework Photonic Assemblies for Secure Optical Encoding

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

Optical encryption using nanostructured materials provides a powerful route for secure data encoding. In this work, an electrically reconfigurable colloidal photonic platform based on covalent organic framework (COF) particles is described, enabling dynamic and bistable data encryption. Spatially controlled electrophoretic assembly of monodisperse COF particles within patterned cells produces Bragg reflections that are visible only under bright-field (BF) microscopy as strong broadband scattering from nanoscale particle surface roughness conceals the encoded states from the naked eye. By tuning the synthesis time, the particle surface roughness and, thus, the degree of concealment can be precisely controlled. Unlike conventional optical systems, where scattering degrades visibility, we report it as an intrinsic security feature, transforming a loss mechanism into a tool for optical masking. The demonstrated platform combines electrical addressability, conditional optical visibility, and algorithmic decoding to deliver a compact, multifactor encryption system. These results demonstrate colloidal COF dispersions as a versatile class of photonic materials for secure displays, anticounterfeiting, and adaptive optical communication technologies.

OriginalspracheEnglisch
Seiten (von - bis)1555-1565
Seitenumfang11
FachzeitschriftACS Nano
Jahrgang20
Ausgabenummer1
DOIs
PublikationsstatusVeröffentlicht - 13 Jan. 2026

Fördermittel

J.C. acknowledges the European Research Council (ERC) for funding this work under the European Union’s Horizon 2020 research and innovation program (ERC Consolidator Grant agreement 101002176). M.R.R. acknowledges the partial financial support provided through EMP for the EMP project SMURFnano. The project (23NRM02 SMURFnano) has received funding from the European Partnership on Metrology, cofinanced from the European Union’s Horizon Europe Research and Innovation Program and by the Participating States (Funder name: European Partnership on Metrology; Funder ID: 10.13039/100019599 ; Grant# 23NRM02 SMURFnano). F.S. acknowledges the Doctoral School of Chemistry, Faculty of Chemistry, University of Vienna, for the financial support. The authors acknowledge help from Dr. Stephan Puchegger of the Nanozentrum, University of Vienna, for assistance with FE-SEM analysis.

TrägerTrägernummer
European Research Council101002176
Euramet e. V.23NRM02 SMURFnano

    ÖFOS 2012

    • 104011 Materialchemie
    • 104017 Physikalische Chemie

    Fingerprint

    Untersuchen Sie die Forschungsthemen von „Hidden Structural Colors from Bistable, Electrically Driven Covalent Organic Framework Photonic Assemblies for Secure Optical Encoding“. Zusammen bilden sie einen einzigartigen Fingerprint.

    Zitationsweisen