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受头足类动物启发的可重构微纳结构化伪装表面

Reconfigurable Micro- and Nano-Structured Camouflage Surfaces Inspired by Cephalopods.

机构信息

Department of Chemistry, University of California, Irvine, Irvine, California 92697, United States.

Department of Chemical and Biomolecular Engineering, University of California, Irvine, Irvine, California 92697, United States.

出版信息

ACS Nano. 2021 Nov 23;15(11):17299-17309. doi: 10.1021/acsnano.0c09990. Epub 2021 Oct 11.

Abstract

Wrinkled surfaces and materials are found throughout the natural world in various plants and animals and are known to improve the performance of emerging optical and electrical technologies. Despite much progress, the reversible post-fabrication tuning of wrinkle sizes and geometries across multiple length scales has remained relatively challenging for some materials, and the development of comprehensive structure-function relationships for optically active wrinkled surfaces has often proven difficult. Herein, by drawing inspiration from natural cephalopod skin and leveraging methodologies established for artificial adaptive infrared platforms, we engineer systems with hierarchically reconfigurable wrinkled surface morphologies and dynamically tunable visible-to-infrared spectroscopic properties. Specifically, we demonstrate architectures for which mechanical actuation changes the surface morphological characteristics; modulates the reflectance, transmittance, and absorptance across a broad spectral window; controls the specular-to-diffuse reflectance ratios; and alters the visible and thermal appearances. Moreover, we demonstrate the incorporation of these architectures into analogous electrically actuated appearance-changing devices that feature competitive figures of merit, such as reasonable maximum areal strains, rapid response times, and good stabilities upon repeated actuation. Overall, our findings constitute another step forward in the continued development of cephalopod-inspired light- and heat-manipulating systems and may facilitate advanced applications in the areas of sensing, electronics, optics, soft robotics, and thermal management.

摘要

褶皱表面和材料在各种植物和动物中广泛存在于自然界中,已知它们可以提高新兴光学和电气技术的性能。尽管已经取得了很大的进展,但对于某些材料来说,在多个长度尺度上对褶皱尺寸和几何形状进行可逆的后制造调谐仍然相对具有挑战性,并且对于具有光学活性的褶皱表面的综合结构-功能关系的开发往往也很困难。在此,我们从天然头足类动物皮肤中汲取灵感,并利用为人工自适应红外平台建立的方法,设计了具有层次可重构褶皱表面形态和动态可调可见光-红外光谱特性的系统。具体来说,我们展示了一些架构,其机械致动会改变表面形态特征;在宽光谱窗口中调制反射率、透射率和吸收率;控制镜面反射率与漫反射率的比值;并改变可见和热外观。此外,我们还展示了这些结构在类似的电致动外观变化装置中的应用,这些装置具有竞争的衡量标准,例如合理的最大面应变、快速响应时间以及在反复致动下的良好稳定性。总的来说,我们的研究结果是头足类动物启发的光热操纵系统持续发展的又一进步,可能会促进在传感、电子、光学、软机器人和热管理等领域的先进应用。

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