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基于双光子光刻技术的双刺激协同响应水凝胶微致动器

Dual-Stimuli Cooperative Responsive Hydrogel Microactuators Via Two-Photon Lithography.

作者信息

Wang Jian-Yu, Jin Feng, Dong Xian-Zi, Liu Jie, Zhou Ming-Xia, Li Teng, Zheng Mei-Ling

机构信息

Laboratory of Organic NanoPhotonics and CAS Key Laboratory of Bio-Inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, No. 29, Zhongguancun East Road, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Yanqihu Campus, Beijing, 101407, P. R. China.

出版信息

Small. 2023 Oct;19(40):e2303166. doi: 10.1002/smll.202303166. Epub 2023 Jun 1.

Abstract

With the development of bionics as well as materials science, intelligent soft actuators have shown promising applications in many fields such as soft robotics, sensing, and remote manipulation. Microfabrication technologies have enabled the reduction of the size of responsive soft actuators to the micron level. However, it is still challenging to construct microscale actuators capable of responding to different external stimuli in complex and diverse conditions. Here, this work demonstrates a dual-stimuli cooperative responsive hydrogel microactuator by asymmetric fabrication via femtosecond laser direct writing. The dual response of the hydrogel microstructure is achieved by employing responsive hydrogel with functional monomer 2-(dimethylamino)ethyl methacrylate. Raman spectra of the hydrogel microstructures suggest that the pH and temperature response of the hydrogel is generated by the changes in tertiary amine groups and hydrogen bonds, respectively. The asymmetric hydrogel microstructures show opposite bending direction when being heated to high temperature or exposed to acid solution, and can independently accomplish the grasp of polystyrene microspheres. Moreover, this work depicts the cooperative response of the hydrogel microactuator to pH and temperature at the same time. The dual-stimuli cooperative responsive hydrogel microactuators will provide a strategy for designing and fabricating controllable microscale actuators with promising applications in microrobotics and microfluidics.

摘要

随着仿生学以及材料科学的发展,智能软致动器在软机器人技术、传感和远程操纵等许多领域都展现出了广阔的应用前景。微纳加工技术已能够将响应性软致动器的尺寸减小到微米级别。然而,构建能够在复杂多样的条件下对不同外部刺激做出响应的微尺度致动器仍然具有挑战性。在此,这项工作通过飞秒激光直写的不对称制造方法展示了一种双刺激协同响应水凝胶微致动器。通过使用含有功能单体甲基丙烯酸2-(二甲氨基)乙酯的响应性水凝胶实现了水凝胶微结构的双重响应。水凝胶微结构的拉曼光谱表明,水凝胶的pH值和温度响应分别是由叔胺基团和氢键的变化产生的。不对称水凝胶微结构在加热到高温或暴露于酸性溶液时会呈现相反的弯曲方向,并且能够独立完成对聚苯乙烯微球的抓取。此外,这项工作还描述了水凝胶微致动器同时对pH值和温度的协同响应。这种双刺激协同响应水凝胶微致动器将为设计和制造可控微尺度致动器提供一种策略,在微型机器人技术和微流体领域具有广阔的应用前景。

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