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一种基于液晶弹性体的前所未有的双向形状记忆气凝胶。

A Liquid Crystal Elastomer-Based Unprecedented Two-Way Shape-Memory Aerogel.

作者信息

Wang Meng, Song Ying, Bisoyi Hari Krishna, Yang Jian-Feng, Liu Li, Yang Hong, Li Quan

机构信息

Institute of Advanced Materials, School of Chemistry and Chemical Engineering, and Jiangsu Hi-Tech Key Laboratory for Biomedical Research, Southeast University, Nanjing, 211189, China.

Advanced Materials and Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent State University, Kent, OH, 44242, USA.

出版信息

Adv Sci (Weinh). 2021 Nov;8(22):e2102674. doi: 10.1002/advs.202102674. Epub 2021 Sep 26.

Abstract

With the advantage of reversible shape-morphing between two different permanent shapes under external stimuli, the two-way shape-memory aerogel is expected to become a preferred aerogel for developing practical applications in actuators, sensors, robotics, and more. Herein, the first two-way shape-memory liquid crystal elastomer (LCE)-based aerogel is prepared by an orthogonal heat and light curing strategy coupled with an intermediate mechanical stretching step. The differential scanning calorimetry, temperature-varied wide-angle X-ray scattering, and polarizing optical microscope results indicate that the aerogel possesses a liquid crystal phase and the insider mesogens are well-oriented along the stretching direction. In addition to having superior compressibility and excellent shape stability, this LCE-based aerogel can perform a reversible shape deformation during the heating/cooling cycles with a shrinkage ratio of 37%. The work, that is disclosed here, realizes a truly two-way shape-memory behavior rather than the one-way shape deformation of traditional polymer aerogel materials, and may promote potential applications of this novel LCE-based aerogel material in control devices, soft actuators, and beyond.

摘要

凭借在外部刺激下在两种不同永久形状之间可逆形状变形的优势,双向形状记忆气凝胶有望成为在致动器、传感器、机器人技术等领域开发实际应用的首选气凝胶。在此,通过正交热光固化策略结合中间机械拉伸步骤制备了首个基于双向形状记忆液晶弹性体(LCE)的气凝胶。差示扫描量热法、变温广角X射线散射和偏光光学显微镜结果表明,该气凝胶具有液晶相,内部的介晶元沿拉伸方向排列良好。除了具有优异的压缩性和出色的形状稳定性外,这种基于LCE的气凝胶在加热/冷却循环过程中可进行可逆形状变形,收缩率为37%。本文所披露的这项工作实现了真正的双向形状记忆行为,而非传统聚合物气凝胶材料的单向形状变形,并可能推动这种新型基于LCE的气凝胶材料在控制装置、软致动器等领域的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a50a/8596101/8ae31fba3778/ADVS-8-2102674-g004.jpg

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