Wang Zhi Jian, Zhu Chao Nan, Hong Wei, Wu Zi Liang, Zheng Qiang
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
J Mater Chem B. 2016 Nov 28;4(44):7075-7079. doi: 10.1039/c6tb02178f. Epub 2016 Sep 26.
Self-shaping materials have attracted tremendous interest due to their promising applications in soft robotics, and flexible electronics, etc. In this field, a crucial issue is how to construct complex yet elaborate structures in active materials. Here, we present the fabrication of composite hydrogels with both in-plane and out-of-plane structural gradients by multi-step photolithography and the resulting controllable deformations. A patterned gel with a layered fibrous structure like bean pod is developed, which shows programmed deformations from a flat shape to a twisted helix. The parameters of the helix can be deliberately tuned. This approach enables patterning different responsive polymers in specific regions of composite gels, leading to multiple shape transformations under stimulations. The controllability of intricate structures, together with tunable responses of localized gels, facilitates the generation of complex internal stresses and three-dimensional deformations of composite gels toward specific applications.
自成型材料因其在软机器人技术、柔性电子学等领域的应用前景而备受关注。在该领域,一个关键问题是如何在活性材料中构建复杂而精细的结构。在此,我们通过多步光刻技术展示了具有面内和面外结构梯度的复合水凝胶的制备及其可控变形。开发出一种具有豆荚状层状纤维结构的图案化凝胶,其显示出从扁平形状到扭曲螺旋的程序化变形。螺旋的参数可以有意调整。这种方法能够在复合凝胶的特定区域对不同的响应性聚合物进行图案化,从而在刺激下实现多种形状转变。复杂结构的可控性以及局部凝胶的可调响应,有助于在特定应用中产生复合凝胶的复杂内应力和三维变形。