Liquid Stratification and Diffusion‐Induced Anisotropic Hydrogel Actuators with Excellent Thermosensitivity and Programmable Functionality

P. Dong, Weizhong Xu, Zhongwen Kuang, Youxing Yao, Zhiqin Zhang, D. Guo, Huaping Wu, T. Zhao, Aiping Liu
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引用次数: 10

Abstract

Smart hydrogel actuators with programmable anisotropic structures present fascinating prospects considering their distinctive shape transformation and controllable environmental responsiveness under external stimuli. However, the design of anisotropic hydrogels with simple and universal fabrication and programmable functionality is challenging for their valuable applications in smart actuators and soft robots. Herein, a simple, green, and devisable strategy is proposed to construct a heterogeneous porous hydrogel system by the different liquid diffusion (such as amyl alcohol, water, and ethanol) into a monomeric precursor solution of thermosensitive hydrogels. The well‐defined micro/nanoporous gradient and patterned structures related to selective liquid stratification and interfacial diffusion favor the fast response and accurate programmable deformation of hydrogels under temperature stimuli. Inspiringly, this simple diffusion‐driven tactic can be perfectly applicable for different responsive hydrogels with programmable multifunctionality by adding functional nanomaterials into the diffusible liquid. This green, general, and facile diffusion‐driven strategy provides significant guidance for fabricating environmentally responsive hydrogels with tailorable functionality for their multipurpose applications in drug delivery, bioengineering, smart actuators, and soft robots.
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液体分层和扩散诱导各向异性水凝胶驱动器具有优异的热敏性和可编程功能
具有可编程各向异性结构的智能水凝胶驱动器由于其在外界刺激下具有独特的形状变换和可控的环境响应能力而具有广阔的应用前景。然而,具有简单和通用制造和可编程功能的各向异性水凝胶的设计对于其在智能执行器和软机器人中的宝贵应用具有挑战性。本文提出了一种简单、绿色、可设计的策略,通过不同的液体扩散(如戊醇、水和乙醇)到热敏水凝胶的单体前驱体溶液中来构建非均质多孔水凝胶体系。明确定义的微孔/纳米孔梯度和与选择性液体分层和界面扩散相关的图案结构有利于水凝胶在温度刺激下的快速响应和精确的可编程变形。令人鼓舞的是,这种简单的扩散驱动策略可以完全适用于具有可编程多功能的不同反应性水凝胶,通过在可扩散液体中添加功能纳米材料。这种绿色、通用、便捷的扩散驱动策略为制造具有可定制功能的环境响应型水凝胶提供了重要指导,可用于药物输送、生物工程、智能执行器和软机器人的多用途应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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