College of Materials Science & Engineering, Zhejiang University of Technology , Hangzhou 310014, China.
Department of Chemical and Biomolecular Engineering, The University of Akron , Akron, Ohio 44325, United States.
ACS Appl Mater Interfaces. 2017 Jun 21;9(24):20843-20851. doi: 10.1021/acsami.7b04417. Epub 2017 Jun 12.
Development of stimuli-responsive, shape-transformable materials is fundamentally and practically important for smart actuators. Herein, we design and synthesize a bilayer hydrogel by assembling a polycationic (polyMETAC/HEAA) layer with polyelectrolyte effect and a polyzwitterionic (polyVBIPS) layer with antipolyelectrolyte effect together. The bilayer hydrogels adopt a pseudo-double-network structure, and both polyelectrolyte and polyzwitterionic layers have salt-responsive swelling and shrinkage properties, but in a completely opposite way. The resulting polyMETAC/HEAA-polyVBIPS bilayer hydrogels exhibit bidirectional bending in response to salt solutions, salt concentrations, and counterion types. Such bidirectional bending of this bilayer hydrogel is fully reversible and triggered between salt solution and pure water multiple times. The bending orientation and degree of the bilayer hydrogel is driven by the opposite volume changes between the volume shrinking (swelling) of polyMETAC/HEAA layer and the volume swelling (shrinking) of polyVBIPS layer. Such cooperative, not competitive, salt-responsive swelling-shrinking properties of the two layers are contributed to by the polyelectrolyte and antipolyelectrolyte effects from the respective layers. Moreover, an eight-arm gripper made of this bilayer hydrogel is fabricated and demonstrates its ability to grasp an object in salt solution and release the object in water. This work provides a new shape-regulated, stimuli-responsive asymmetric hydrogel for actuator-based applications.
刺激响应型、形状可变形材料的开发对于智能执行器具有根本和实际的重要性。在此,我们通过组装具有聚电解质效应的聚阳离子(polyMETAC/HEAA)层和具有反聚电解质效应的聚两性离子(polyVBIPS)层,设计并合成了双层水凝胶。双层水凝胶采用伪双网络结构,聚电解质层和聚两性离子层都具有盐响应的溶胀和收缩特性,但方式完全相反。所得的 polyMETAC/HEAA-polyVBIPS 双层水凝胶对盐溶液、盐浓度和抗衡离子类型表现出双向弯曲响应。这种双层水凝胶的双向弯曲是完全可逆的,可以在盐溶液和纯水之间多次触发。双层水凝胶的弯曲方向和程度由聚 METAC/HEAA 层的体积收缩(溶胀)和 polyVBIPS 层的体积溶胀(收缩)之间的相反体积变化驱动。这种两层之间的协同而非竞争的盐响应溶胀收缩特性归因于各自层的聚电解质和反聚电解质效应。此外,还制造了由这种双层水凝胶制成的八臂夹爪,并展示了其在盐溶液中抓取物体和在水中释放物体的能力。这项工作为基于执行器的应用提供了一种新的形状调控、刺激响应不对称水凝胶。