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受变色龙启发的非密堆积胶体阵列组成的机械变色光子膜。

Chameleon-Inspired Mechanochromic Photonic Films Composed of Non-Close-Packed Colloidal Arrays.

机构信息

Department of Chemical and Biomolecular Engineering (BK21+ Program), Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141, Republic of Korea.

The 4th R&D Institute, Agency for Defense Development , Daejeon 34060, Republic of Korea.

出版信息

ACS Nano. 2017 Nov 28;11(11):11350-11357. doi: 10.1021/acsnano.7b05885. Epub 2017 Nov 8.

Abstract

Chameleons use a non-close-packed array of guanine nanocrystals in iridophores to develop and tune skin colors in the full visible range. Inspired by the biological process uncovered in panther chameleons, we designed photonic films containing a non-close-packed face-centered-cubic array of silica particles embedded in an elastomer. The non-close-packed array is formed by interparticle repulsion exerted by solvation layers on the particle surface, which is rapidly captured in the elastomer by photocuring of the dispersion medium. The artificial skin exhibits a structural color that shifts from red to blue under stretching or compression. The separation between inelastic particles enables tuning without experiencing significant rearrangement of particles, providing elastic deformation and reversible color change, as chameleons do. The simple fabrication procedure consists of film casting and UV irradiation, potentially enabling the continuous high-throughput production. The mechanochromic property of the photonic films enables the visualization of deformation or stress with colors, which is potentially beneficial for various applications, including mechanical sensors, sound-vision transformers, and color display.

摘要

变色龙通过在虹彩细胞中使用非密堆积的鸟嘌呤纳米晶体阵列来开发和调节整个可见光范围内的皮肤颜色。受豹纹变色龙体内揭示的生物过程的启发,我们设计了含有光子膜的光致聚合物,其中包含嵌入在弹性体中的二氧化硅粒子的非密堆积面心立方阵列。非密堆积阵列是由粒子表面溶剂化层施加的粒子间斥力形成的,通过分散介质的光固化,该斥力在弹性体中迅速被捕获。人工皮肤在拉伸或压缩下会显示出从红色到蓝色的结构色变化。由于弹性粒子之间的分离,在不经历显著的粒子重排的情况下即可进行调谐,从而提供像变色龙一样的弹性变形和可逆的颜色变化。简单的制造工艺包括薄膜铸造和 UV 照射,这可能使连续的高通量生产成为可能。光子膜的力致变色特性可以用颜色来可视化变形或应力,这对于各种应用可能是有益的,包括机械传感器、声-光转换器和彩色显示器。

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