State Key Laboratory for Strength and Vibration of Mechanical Structures, Department of Engineering Mechanics, Xi'an Jiaotong University, Xi'an, 710049, China.
J Mater Chem B. 2021 Nov 17;9(44):9183-9190. doi: 10.1039/d1tb01694f.
Magnetic hydrogels have demonstrated great potential in soft robots, drug delivery, and bioengineering, and their functions are usually determined by the deforming capability. However, most magnetic hydrogels are embedded with soft magnetic particles ( FeO), where the magnetic domains cannot be programmed and retained under external magnetic fields. Here, we present a strategy to prepare a microgel-reinforced magnetic hydrogel, embedded with hard magnetic NdFeB particles. These magnetic hydrogels show outstanding mechanical properties (ultimate stretching ratio >15 and fracture toughness >15 000 J m) and fast actuation speed under external magnetic fields. We use direct ink writing to fabricate magnetic hydrogels with sophisticated geometry and program their magnetization to achieve complex deformations. Fast, reversible, shape-changing structures have been demonstrated with printed magnetic hydrogels. It is hoped that this material system of hard magnetic hydrogels can open opportunities for wide applications.
磁水凝胶在软机器人、药物输送和生物工程领域具有巨大的应用潜力,其功能通常取决于其变形能力。然而,大多数磁水凝胶中嵌入的软磁性颗粒(如 FeO),在外磁场下其磁畴无法被编程和保留。在这里,我们提出了一种制备微凝胶增强磁水凝胶的策略,其中嵌入了硬磁性 NdFeB 颗粒。这种磁水凝胶在外磁场下表现出优异的机械性能(极限拉伸比>15,断裂韧性>15000J m)和快速驱动速度。我们使用直接墨水书写技术制造具有复杂几何形状的磁水凝胶,并对其磁化进行编程,以实现复杂的变形。我们展示了具有快速、可逆、形状变化结构的印刷磁水凝胶。希望这种硬磁水凝胶材料系统能够为广泛的应用开辟机会。