School of Materials Science and Engineering, South China University of Technology, Guangzhou 510006, P. R. China.
J Mater Chem B. 2021 Jan 7;9(1):176-186. doi: 10.1039/d0tb02049d. Epub 2020 Nov 25.
Tough hydrogels with the ability to be repeatedly processed into various shapes as thermoplastics are highly desired in advanced medical devices and tissue engineering. Here, we have developed a kind of versatile supramolecular hydrogel with a network cross-linked by double hydrogen bonds from poly(N-acryloyl glycinamide) (PNAGA). The resulting PNAGA-30 hydrogels (30 wt% solid content) are tough, re-processable, and recyclable similar to thermoplastics. The hydrogels in the form of fragments can be easily re-processed into various shapes including sheet, filament, cylinder and other complex shapes by using simple stamping and injection methods. The mechanical properties of the re-programed hydrogels are comparable to the properties of the original hydrogels. The re-processability and robust mechanical properties of the PNAGA hydrogels are promising for practical applications in soft materials, tissue engineering and wearable devices. Furthermore, the PNAGA-30&LiCl ionic hydrogels can be fabricated by simply compositing LiCl into thermoplastic hydrogels. The PNAGA-30&LiCl hydrogels can function as multifunctional strain sensors to monitor large human movements and tiny vibrations, thereby showing great application potential in robotics, biomedical prosthetics, personal healthcare monitoring and so on.
具有像热塑性塑料一样能够反复加工成各种形状的坚韧水凝胶,在先进的医疗器械和组织工程中是非常需要的。在这里,我们开发了一种由聚(N-丙烯酰基甘氨酸酰胺)(PNAGA)的双氢键网络交联的多功能超分子水凝胶。所得的 PNAGA-30 水凝胶(30wt%固含量)坚韧、可再加工和可回收,类似于热塑性塑料。通过简单的冲压和注射方法,碎片形式的水凝胶可以轻松地再加工成各种形状,包括片材、纤维、圆柱体和其他复杂形状。重新编程的水凝胶的机械性能与原始水凝胶的性能相当。PNAGA 水凝胶的可再加工性和强大的机械性能为在软材料、组织工程和可穿戴设备中的实际应用提供了广阔的前景。此外,通过简单地将 LiCl 复合到热塑性水凝胶中,可以制备 PNAGA-30&LiCl 离子水凝胶。PNAGA-30&LiCl 水凝胶可用作多功能应变传感器,以监测人体的大幅度运动和微小振动,因此在机器人技术、生物医学假肢、个人医疗保健监测等方面具有巨大的应用潜力。