Wang Liqian, Liu Fengrui, Qian Jin, Wu Ziliang, Xiao Rui
State Key Laboratory of Fluid Power & Mechatronic System, Key Laboratory of Soft Machines and Smart Devices of Zhejiang Province, Department of Engineering Mechanics, Zhejiang University, Hangzhou 310027, China.
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
Soft Matter. 2021 Dec 1;17(46):10421-10427. doi: 10.1039/d1sm01178b.
Hydrogels are widely used in applications such as soft robots and flexible sensors due to their sensitivity to environmental stimuli. It is highly demanded to develop multiple-responsive hydrogel structures. In this work, we employ the 3D printing technique to fabricate a PNIPAM-PEGDA hydrogel bilayer that can change shape through controlling the temperature, solvent mixture and magnetic field. The PNIPAM gel is a typical thermo-responsive gel, showing a decrease in swelling ratio with increasing temperature. Meanwhile, the PNIPAM gels also exhibit the cononsolvency effect in ethanol-water mixtures with a smaller swelling ratio in the mixture compared with that in each pure solvent. In comparison, the swelling ratio of PEGDA gels is insensitive to changes in both the temperature and solvent composition. Thus, the bilayer structure of PNIPAM-PEGDA can bend in different directions and with different angles with changing the temperature and solvent composition. Finally, FeO nanoparticles are incorporated into the matrix of PEGDA gels, endowing the whole structure with deformation and motion in response to an external magnetic field.
由于水凝胶对环境刺激敏感,它们被广泛应用于软机器人和柔性传感器等领域。开发多重响应水凝胶结构的需求很高。在这项工作中,我们采用3D打印技术制造了一种PNIPAM-PEGDA水凝胶双层结构,该结构可以通过控制温度、溶剂混合物和磁场来改变形状。PNIPAM凝胶是一种典型的热响应凝胶,随着温度升高溶胀率降低。同时,PNIPAM凝胶在乙醇-水混合物中也表现出盐析效应,在混合物中的溶胀率比在每种纯溶剂中都小。相比之下,PEGDA凝胶的溶胀率对温度和溶剂组成的变化不敏感。因此,PNIPAM-PEGDA的双层结构可以随着温度和溶剂组成的变化向不同方向以不同角度弯曲。最后,将FeO纳米颗粒掺入PEGDA凝胶的基质中,使整个结构能够响应外部磁场而发生变形和运动。