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Engineering Dynamic Structural Color Pixels at Microscales by Inhomogeneous Strain-Induced Localized Topographic Change
Journal article   Peer reviewed

Engineering Dynamic Structural Color Pixels at Microscales by Inhomogeneous Strain-Induced Localized Topographic Change

Yujie Ke, Qifeng Ruan, Yanbin Li, Hao Wang, Hongtao Wang, Wang Zhang, Chengfeng Pan, Parvathi Nair Suseela Nair, Jie Yin and Joel K. W. Yang
Nano letters, Vol.23(12), pp.5520-5527
28/06/2023
PMID: 37290093

Abstract

Chemistry Chemistry, Multidisciplinary Chemistry, Physical Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Physics Physics, Applied Physics, Condensed Matter Science & Technology Science & Technology - Other Topics Technology
Structural colors in homogeneous elastomeric materialspredominantlyexhibit uniform color changes under applied strains. However, juxtaposingmechanochromic pixels that exhibit distinct responses to applied strainremains challenging, especially on the microscale where the demandfor miscellaneous spectral information increases. Here, we presenta method to engineer microscale switchable color pixels by creatinglocalized inhomogeneous strain fields at the level of individual microlines.Trenches produced by transfer casting from 2.5D structures into elastomersexhibit a uniform structural color in the unstretched state due tointerference and scattering effects, while they show different colorsunder an applied uniaxial strain. This programmable topographic changeresulting in color variation arises from strain mismatch between layersand trench width. We utilized this effect to achieve the encryptionof text strings with Morse code. The effective and facile design principleis promising for diverse optical devices based on dynamic structuresand topographic changes.

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