微尺度化学
像素
结构着色
材料科学
弹性体
沟槽
拉伤
光电子学
光学
生物系统
纳米技术
复合材料
物理
医学
数学教育
数学
光子晶体
图层(电子)
内科学
生物
作者
Yujie Ke,Qifeng Ruan,Yanbin Li,Hao Wang,Hongtao Wang,Wang Zhang,Chengfeng Pan,Parvathi Nair Suseela Nair,Jie Yin,Joel K. W. Yang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-06-08
卷期号:23 (12): 5520-5527
被引量:6
标识
DOI:10.1021/acs.nanolett.3c00808
摘要
Structural colors in homogeneous elastomeric materials predominantly exhibit uniform color changes under applied strains. However, juxtaposing mechanochromic pixels that exhibit distinct responses to applied strain remains challenging, especially on the microscale where the demand for miscellaneous spectral information increases. Here, we present a method to engineer microscale switchable color pixels by creating localized inhomogeneous strain fields at the level of individual microlines. Trenches produced by transfer casting from 2.5D structures into elastomers exhibit a uniform structural color in the unstretched state due to interference and scattering effects, while they show different colors under an applied uniaxial strain. This programmable topographic change resulting in color variation arises from strain mismatch between layers and trench width. We utilized this effect to achieve the encryption of text strings with Morse code. The effective and facile design principle is promising for diverse optical devices based on dynamic structures and topographic changes.
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