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形状记忆聚合物薄膜的光可编程湿度响应驱动

Photoprogrammable Moisture-Responsive Actuation of a Shape Memory Polymer Film.

作者信息

Xue Jieying, Ge Yuhua, Liu Zhaotie, Liu Zhongwen, Jiang Jinqiang, Li Guo

机构信息

Key Laboratory of Syngas Conversion of Shaanxi Province, Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an, Shaanxi 710062, China.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 2;14(8):10836-10843. doi: 10.1021/acsami.1c24018. Epub 2022 Feb 15.

Abstract

Humidity-responsive polymeric actuators have gained considerable interest due to their great potential in the fields including soft robotics, artificial muscles, smart sensors, and actuators. However, most of them can only exhibit invariable shape changes, which severely restricts their further exploration and practical use. Herein, we report that programmable humidity-responsive actuating behaviors can be realized by introducing photoprogrammable hygroscopic patterns into shape memory polymers. Poly(ethylene--acrylic acid) is selected as a model polymer and the solvent-processed thin films are soft and elastic, whose external shapes can be programmed by a modified shape memory process. On another aspect, an Fe-carboxylate coordinating network formed by surface treatments can be spatially dissociated under UV, resulting in transient hygroscopic gradients as active joints for moisture-driven actuation. Moreover, we show that the shape memory effect can be an effective means to adjust the direction as well as the amplitude of the moisture-driven actuating behavior. The proposed strategy is convenient and can be generally extended to other shape memory polymers to realize programmable moisture-responsive actuating behaviors.

摘要

湿度响应型聚合物致动器因其在软机器人技术、人造肌肉、智能传感器和致动器等领域的巨大潜力而备受关注。然而,它们中的大多数只能表现出不变的形状变化,这严重限制了它们的进一步探索和实际应用。在此,我们报告通过将光可编程吸湿图案引入形状记忆聚合物中,可以实现可编程的湿度响应致动行为。选择聚(乙烯-丙烯酸)作为模型聚合物,溶剂处理的薄膜柔软且有弹性,其外部形状可以通过改进的形状记忆过程进行编程。另一方面,通过表面处理形成的铁羧酸盐配位网络在紫外线下可在空间上解离,产生瞬态吸湿梯度作为水分驱动致动的活性关节。此外,我们表明形状记忆效应可以是调节水分驱动致动行为的方向和幅度的有效手段。所提出的策略简便易行,并且通常可以扩展到其他形状记忆聚合物以实现可编程的湿度响应致动行为。

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