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受变色龙启发的基于智能皮肤的主动可调结构色,具有结构色、传感和致动的多功能性。

Chameleon-inspired active tunable structural color based on smart skin with multi-functions of structural color, sensing and actuation.

机构信息

Micro- and Nano-Technology Research Center, State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

Frontier Institute of Science and Technology (FIST), Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

Mater Horiz. 2023 Jun 6;10(6):2024-2034. doi: 10.1039/d3mh00070b.

Abstract

Tunable structural color has many potential applications in artificial camouflage, mechanical sensors, Despite the extensive efforts to develop efficient tunable structural color, there is still a wide gap between the existing "passive" tuning methods and the "active" strategy found on organisms such as chameleons that can change color according to the environment. Inspired by the active tunable color system of chameleons, we propose a smart skin comprising a nanoscale hole array of photonic crystals, carbon nanotube coatings, and liquid crystal elastomers, to integrate multiple functions, , structural color tunability, sensing, and actuation, in one structure. The smart skin was further coupled with an image acquisition unit (which mimics eyes to obtain colors from the environment) and a controller (which mimics the brain to process the signals transmitted from the image acquisition unit to the smart skin), to construct an active tunable structural color system. The proposed system autonomously modulates the color according to the environmental color. To validate the color tuning, color scanning from red to green to blue or is demonstrated in this work, which could certainly open up new paths to create active tunable structural color systems, and thus, push the development of structural color-based devices and systems.

摘要

可调谐结构色在人工伪装、机械传感器等领域具有许多潜在的应用。尽管人们已经做出了广泛的努力来开发高效的可调谐结构色,但现有的“被动”调谐方法与变色龙等生物的“主动”策略之间仍然存在很大差距,变色龙可以根据环境改变颜色。受变色龙主动可调颜色系统的启发,我们提出了一种由纳米孔阵列光子晶体、碳纳米管涂层和液晶弹性体组成的智能皮肤,将多种功能(结构色可调谐性、传感和致动)集成在一个结构中。智能皮肤进一步与图像采集单元(模拟眼睛从环境中获取颜色)和控制器(模拟大脑处理从图像采集单元传输到智能皮肤的信号)耦合,构建一个主动可调谐结构色系统。所提出的系统可以根据环境颜色自动调节颜色。为了验证颜色的调节,在这项工作中展示了从红色到绿色到蓝色或的颜色扫描,这无疑为创建主动可调谐结构色系统开辟了新的途径,从而推动了基于结构色的器件和系统的发展。

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