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液晶弹性体致动的可重构微尺度剪纸状超材料结构。

Liquid-Crystal-Elastomer-Actuated Reconfigurable Microscale Kirigami Metastructures.

机构信息

Key Laboratory of Organic Optoelectronics and Molecular Engineering of the Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, China.

Physical Intelligence Department, Max Planck Institute for Intelligent Systems, 70569, Stuttgart, Germany.

出版信息

Adv Mater. 2021 Jun;33(25):e2008605. doi: 10.1002/adma.202008605. Epub 2021 May 13.

Abstract

Programmable actuation of metastructures with predesigned geometrical configurations has recently drawn significant attention in many applications, such as smart structures, medical devices, soft robotics, prosthetics, and wearable devices. Despite remarkable progress in this field, achieving wireless miniaturized reconfigurable metastructures remains a challenge due to the difficult nature of the fabrication and actuation processes at the micrometer scale. Herein, microscale thermo-responsive reconfigurable metasurfaces using stimuli-responsive liquid crystal elastomers (LCEs) is fabricated as an artificial muscle for reconfiguring the 2D microscale kirigami structures. Such structures are fabricated via two-photon polymerization with sub-micrometer precision. Through rationally designed experiments guided by simulations, the optimal formulation of the LCE artificial muscle is explored and the relationship between shape transformation behaviors and geometrical parameters of the kirigami structures is build. As a proof of concept demonstration, the constructs for temperature-dependent switching and information encryption is applied. Such reconfigurable kirigami metastructures have significant potential for boosting the fundamental small-scale metastructure research and the design and fabrication of wireless functional devices, wearables, and soft robots at the microscale as well.

摘要

具有预定几何结构的介观结构的可编程致动最近在许多应用中引起了极大的关注,例如智能结构、医疗设备、软机器人、假肢和可穿戴设备。尽管在这一领域取得了显著的进展,但由于在微尺度制造和致动过程的固有难度,实现无线微型可重构介观结构仍然是一个挑战。在此,使用对刺激响应的液晶弹性体(LCE)制造了微尺度热响应可重构介观表面,作为用于重新配置二维微尺度折纸结构的人工肌肉。通过具有亚微米精度的双光子聚合制造了这种结构。通过模拟指导的合理设计实验,探索了 LCE 人工肌肉的最佳配方,并建立了形状变换行为与折纸结构几何参数之间的关系。作为概念验证演示,应用了用于温度相关切换和信息加密的结构。这种可重构折纸介观结构有望推动基本的小尺度介观结构研究,以及在微尺度上设计和制造无线功能设备、可穿戴设备和软机器人。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/867b/11469287/5f546d0528c1/ADMA-33-2008605-g003.jpg

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