Patternable and Rewritable Retroreflective Structural Color Shape Memory Polymers

Almost all the shape memory structural color materials are based on the photonic crystal color mechanism, and there remain great challenges such as iridescent colors, hard fabrication, etc. Herein, a new kind of shape memory retroreflective structural color film (SMRSCF) is fabricated through the “t...

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Veröffentlicht in:Advanced optical materials 2021-10, Vol.9 (19), p.n/a
Hauptverfasser: Ji, Cuiping, Chen, Min, Wu, Limin
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Wu, Limin
description Almost all the shape memory structural color materials are based on the photonic crystal color mechanism, and there remain great challenges such as iridescent colors, hard fabrication, etc. Herein, a new kind of shape memory retroreflective structural color film (SMRSCF) is fabricated through the “two‐template” method, based on the mechanisms of retroreflection and interference combined with total internal reflection. Different from photonic crystal color shape memory materials, this new SMRSCF displays brilliant monochromatic, polychromatic, complex, and stitched patterns, respectively, depending upon the flexibly customized templates. The shape memory polymers can further endow the film with excellent reusability and rewritability. This SMRSCF and its fabrication method provide a new design strategy to construct shape memory structural color materials. A new kind of shape memory structural color material is developed based on the mechanisms of retroreflection, total internal reflection, and interference. The shape memory polymers can endow the film with programmable, reusable, and rewritable properties. Complex, polychromic, and reproducible patterns can be prepared by flexibly customizing the templates and from the reusable templates.
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Different from photonic crystal color shape memory materials, this new SMRSCF displays brilliant monochromatic, polychromatic, complex, and stitched patterns, respectively, depending upon the flexibly customized templates. The shape memory polymers can further endow the film with excellent reusability and rewritability. This SMRSCF and its fabrication method provide a new design strategy to construct shape memory structural color materials. A new kind of shape memory structural color material is developed based on the mechanisms of retroreflection, total internal reflection, and interference. The shape memory polymers can endow the film with programmable, reusable, and rewritable properties. 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subjects Color
Crystal structure
Materials science
Optics
patterning
Photonic crystals
Polymers
Retroreflection
retroreflective structural colors
rewritable paper
Shape memory
shape memory polymers
title Patternable and Rewritable Retroreflective Structural Color Shape Memory Polymers
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