Ministry of Education Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
Chem Asian J. 2019 Jan 4;14(1):94-104. doi: 10.1002/asia.201801333. Epub 2018 Oct 17.
Programmed deformations are widespread in nature, providing elegant paradigms to design self-morphing materials with promising applications in biomedical devices, flexible electronics, soft robotics, etc. In this emerging field, hydrogels are an ideal material to investigate the deformation principle and the structure-deformation relationship. One crucial step is to construct heterogeneous structures in a facile yet effective way. Herein, we provide a focus review on different deformation modes and corresponding structural features of hydrogels. Photolithography is a versatile approach to control the outer shape of the hydrogel and spatial distribution of the component in the hydrogel, endowing the patterned hydrogels with programmed internal stress and thus controllable deformations. Specifically, cooperative deformations take place in periodically patterned hydrogels with in-plane gradients, and multiple morphing structures are formed in one patterned hydrogel using selective preswelling to direct the buckling of each unit. The structural control strategy and deformation principles should be applicable to other materials with broad applications in diverse areas.
程序化变形在自然界中广泛存在,为设计具有自变形功能的材料提供了优雅的范例,这些材料在生物医学设备、柔性电子、软机器人等领域有广泛的应用前景。在这个新兴领域中,水凝胶是研究变形原理和结构-变形关系的理想材料。其中一个关键步骤是以简单而有效的方式构建非均匀结构。本文重点综述了水凝胶的不同变形模式和相应的结构特征。光致光刻是一种控制水凝胶外轮廓和水凝胶中组分空间分布的通用方法,赋予图案化水凝胶可编程的内应力,从而实现可控变形。具体来说,在具有面内梯度的周期性图案化水凝胶中会发生协同变形,而选择性预溶胀则用于引导每个单元的屈曲,从而在一个图案化水凝胶中形成多种变形结构。这种结构控制策略和变形原理应该适用于具有广泛应用前景的其他材料。