Xu Bo, Wang Hezhen, Luo Zixiong, Yang Jiping, Wang Zhijian
Key Laboratory of Aerospace Advanced Materials and Performance, Ministry of Education, School of Materials Science and Engineering, Beihang University, Beijing 100191, China.
ACS Appl Mater Interfaces. 2023 Mar 1;15(8):11122-11130. doi: 10.1021/acsami.2c22564. Epub 2023 Feb 19.
Cephalopods can change their color and patterns by activating the skin chromatophores for camouflage. However, in the man-made soft material systems, it is greatly challenging to fabricate the color-change structure in the desired patterns and shapes. Herein, we employ a multi-material microgel direct ink writing (DIW) printing method to make mechanochromic double network hydrogels in arbitrary shapes. We prepare the microparticles by grinding the freeze-dried polyelectrolyte hydrogel and immobilize the microparticles in the precursor solution to produce the printing ink. The polyelectrolyte microgels contain mechanophores as the cross-linkers. We adjust the rheological and printing properties of the microgel ink by tailoring the grinding time of freeze-dried hydrogels and microgel concentration. The multi-material DIW 3D printing technique is utilized to fabricate various 3D hydrogel structures which could change into a colorful pattern in response to applied force. The microgel printing strategy shows great potential in the fabrication of the mechanochromic device with arbitrary patterns and shapes.
头足类动物可以通过激活皮肤色素细胞来改变颜色和图案,以实现伪装。然而,在人造软材料系统中,制造出具有所需图案和形状的变色结构极具挑战性。在此,我们采用多材料微凝胶直接墨水书写(DIW)打印方法来制备任意形状的机械变色双网络水凝胶。我们通过研磨冻干的聚电解质水凝胶来制备微粒,并将微粒固定在前驱体溶液中以制备打印墨水。聚电解质微凝胶含有作为交联剂的机械发色团。我们通过调整冻干水凝胶的研磨时间和微凝胶浓度来调节微凝胶墨水的流变学和打印性能。利用多材料DIW 3D打印技术制造各种3D水凝胶结构,这些结构在受到外力作用时会变成彩色图案。微凝胶打印策略在制造具有任意图案和形状的机械变色装置方面显示出巨大潜力。