Yao Xin, Chen Hong, Qin Haili, Cong Huai-Ping
Anhui Province Key Laboratory of Advanced Catalytic Materials and Reaction Engineering, School of Chemistry and Chemical Engineering, Hefei University of Technology, Hefei, 230009, China.
Small Methods. 2024 Apr;8(4):e2300414. doi: 10.1002/smtd.202300414. Epub 2023 Jun 27.
Flexible intelligent actuators with the characteristics of flexibility, safety and scalability, are highly promising in industrial production, biomedical fields, environmental monitoring, and soft robots. Nanocomposite hydrogels are attractive candidates for soft actuators due to their high pliability, intelligent responsiveness, and capability to execute large-scale rapid reversible deformations under external stimuli. Here, the recent advances of nanocomposite hydrogels as soft actuators are reviewed and focus is on the construction of elaborate and programmable structures by the assembly of nano-objects in the hydrogel matrix. With the help of inducing the gradient or oriented distributions of the nanounits during the gelation process by the external forces or molecular interactions, nanocomposite hydrogels with ordered structures are achieved, which can perform bending, spiraling, patterned deformations, and biomimetic complex shape changes. Given great advantages of these intricate yet programmable shape-morphing, nanocomposite hydrogel actuators have presented high potentials in the fields of moving robots, energy collectors, and biomedicines. In the end, the challenges and future perspectives of this emerging field of nanocomposite hydrogel actuators are proposed.
具有柔韧性、安全性和可扩展性等特性的柔性智能致动器在工业生产、生物医学领域、环境监测和软体机器人方面极具前景。纳米复合水凝胶因其高柔韧性、智能响应性以及在外部刺激下能够执行大规模快速可逆变形的能力,成为软致动器的理想候选材料。在此,本文综述了纳米复合水凝胶作为软致动器的最新进展,重点关注通过在水凝胶基质中组装纳米物体构建精细且可编程的结构。借助外力或分子相互作用在凝胶化过程中诱导纳米单元的梯度或取向分布,可实现具有有序结构的纳米复合水凝胶,其能够执行弯曲、螺旋、图案化变形以及仿生复杂形状变化。鉴于这些复杂但可编程的形状变形具有诸多优势,纳米复合水凝胶致动器在移动机器人、能量收集器和生物医学等领域展现出了巨大潜力。最后,本文提出了纳米复合水凝胶致动器这一新兴领域所面临的挑战和未来展望。