Zhang Longhao, Yan Hao, Zhou JiaJia, Zhao Ziguang, Huang Jin, Chen Lie, Ru Yunfei, Liu Mingjie
Key Laboratory of Bioinspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University, Beijing, 100191, P. R. China.
South China Advanced Institute for Soft Matter Science and Technology, School of Molecular Science and Engineering, South China University of Technology, Guangzhou, 510640, P. R. China.
Adv Mater. 2023 Mar;35(9):e2202193. doi: 10.1002/adma.202202193. Epub 2023 Jan 5.
Current hydrogel actuators mostly suffer from weak actuation strength and low responsive speed owing to their solvent diffusion-induced volume change mechanism. Here a skeletal muscle-inspired organohydrogel actuator is reported in which solvents are confined in hydrophobic microdomains. Organohydrogel actuator is driven by compartmentalized directional network deformation instead of volume change, avoiding the limitations that originate from solvent diffusion. Organohydrogel actuator has an actuation frequency of 0.11 Hz, 110 times that of traditional solvent diffusion-driven hydrogel actuators (<10 Hz), and can lift more than 85 times their own weight. This design achieves the combination of high responsive speed, high actuation strength, and large material size, proposing a strategy to fabricate hydrogel actuators comparable with skeletal muscle performance.
由于其溶剂扩散诱导的体积变化机制,当前的水凝胶致动器大多存在致动强度弱和响应速度低的问题。在此报道了一种受骨骼肌启发的有机水凝胶致动器,其中溶剂被限制在疏水微域中。有机水凝胶致动器由分区定向网络变形驱动而非体积变化,避免了源于溶剂扩散的局限性。有机水凝胶致动器的致动频率为0.11赫兹,是传统溶剂扩散驱动的水凝胶致动器(<10赫兹)的110倍,并且能够举起超过自身重量85倍的物体。这种设计实现了高响应速度、高致动强度和大材料尺寸的结合,提出了一种制造性能可与骨骼肌媲美的水凝胶致动器的策略。