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充气手性向列型液晶弹性体中的宽带和像素化伪装

Broadband and pixelated camouflage in inflating chiral nematic liquid crystalline elastomers.

作者信息

Kim Se-Um, Lee Young-Joo, Liu Jiaqi, Kim Dae Seok, Wang Haihuan, Yang Shu

机构信息

Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, PA, USA.

Department of Polymer Engineering, Pukyong National University, Busan, South Korea.

出版信息

Nat Mater. 2022 Jan;21(1):41-46. doi: 10.1038/s41563-021-01075-3. Epub 2021 Sep 6.

Abstract

Living organisms such as fishes, cephalopods and clams are cryptically coloured with a wide range of hues and patterns for camouflage, signalling or energy regulation. Despite extensive efforts to create colour-changing materials and devices, it is challenging to achieve pixelated structural coloration with broadband spectral shifts in a compact space. Here, we describe pneumatically inflating thin membranes of main-chain chiral nematic liquid crystalline elastomers that have such properties. By taking advantage of the large elasticity anisotropy and Poisson's ratio (>0.5) of these materials, we geometrically program the size and the layout of the encapsulated air channels to achieve colour shifting from near-infrared to ultraviolet wavelengths with less than 20% equi-biaxial transverse strain. Each channel can be individually controlled as a colour 'pixel' to match with surroundings, whether periodically or irregularly patterned. These soft materials may find uses in distinct applications such as cryptography, adaptive optics and soft robotics.

摘要

鱼类、头足类动物和蛤蜊等生物具有各种色调和图案的保护色,用于伪装、信号传递或能量调节。尽管人们为制造变色材料和设备付出了巨大努力,但要在紧凑空间内实现具有宽带光谱偏移的像素化结构色仍具有挑战性。在此,我们描述了具有此类特性的主链手性向列型液晶弹性体的气动充气薄膜。通过利用这些材料的大弹性各向异性和泊松比(>0.5),我们对封装空气通道的尺寸和布局进行几何编程,以在小于20%的等双轴横向应变下实现从近红外到紫外波长的颜色变化。每个通道都可以作为一个颜色“像素”进行单独控制,以匹配周围环境,无论是周期性还是不规则图案。这些柔软材料可能会在密码学、自适应光学和软体机器人等不同应用中找到用武之地。

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