Programmable thermo-Responsive actuation of hydrogels via light-Guided surface growth of active layers on shape memory substrates.
Guang-Lin FanShu-Wei WangYing-Ying ZhangZhao-Tie LiuZhong-Wen LiuLei WangJin-Qiang JiangGuo LiPublished in: Macromolecular rapid communications (2022)
Hydrogel shape memory and actuating functionalities are heavily pursued and have found great potential in various application fields. However, their combination for more flexible and complicated morphing behaviors is still challenging. Here we report that by controlling the light-initiated polymerization of active hydrogel layers on shape memory hydrogel substrates, advanced morphing behaviors based on programmable hydrogel shapes and actuating trajectories are realized. The formation and photo-reduction-induced dissociation of Fe 3+ -carboxylate coordination endow the hydrogel substrates with shape memory functionality. The photo-reduced Fe 2+ ions can diffuse from the substrates into the monomer solutions to initiate the polymerization of the thermally responsive active layers, whose actuating temperatures and amplitudes can be facially tuned by controlling their thicknesses and compositions. One potential application, a shape-programmable 3D hook that can lift an object with a specific shape, is also unveiled. The demonstrated strategy is extendable to other hydrogel systems to realize more versatile and complicated actuating behaviors. This article is protected by copyright. All rights reserved.