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When nanocellulose meets diffraction grating: freestanding photonic paper with programmable optical coupling.


ABSTRACT: Photonic crystals based on plasmonic or dielectric periodic structures have attracted considerable interest owing to their capabilities to control light-matter interactions with tailored precision. By using a nanocellulose derived chiral liquid crystal as a building block, here we demonstrate a bio-inspired dual photonic structure that contains the combination of microscopic periodic 1D surface grating and nanoscopic helical organization, giving rise to programmable colour mixing and polarization rotation. We show that a variation in the photonic band-gap in the bulk matrix leads to simultaneous control over the reflection and diffraction of light with controllable iridescence.

SUBMITTER: Chu G 

PROVIDER: S-EPMC7362743 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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When nanocellulose meets diffraction grating: freestanding photonic paper with programmable optical coupling.

Chu Guang G   Qu Dan D   Camposeo Andrea A   Pisignano Dario D   Zussman Eyal E  

Materials horizons 20191002 2


Photonic crystals based on plasmonic or dielectric periodic structures have attracted considerable interest owing to their capabilities to control light-matter interactions with tailored precision. By using a nanocellulose derived chiral liquid crystal as a building block, here we demonstrate a bio-inspired dual photonic structure that contains the combination of microscopic periodic 1D surface grating and nanoscopic helical organization, giving rise to programmable colour mixing and polarizatio  ...[more]

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