Guo Kexin, Yang Xuehan, Zhou Chao, Li Chuang
Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, 230026, China.
CAS Key Laboratory of Nano-Bio Interface, Division of Nanobiomedicine and i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou, 215123, China.
Nat Commun. 2024 Feb 24;15(1):1694. doi: 10.1038/s41467-024-46100-6.
Environmentally adaptive hydrogels that are capable of reconfiguration in response to external stimuli have shown great potential toward bioinspired actuation and soft robotics. Previous efforts have focused mainly on either the sophisticated design of heterogeneously structured hydrogels or the complex manipulation of external stimuli, and achieving self-regulated reversal shape deformation in homogenous hydrogels under a constant stimulus has been challenging. Here, we report the molecular design of structurally homogenous hydrogels containing simultaneously two spiropyrans that exhibit self-regulated transient deformation reversal when subjected to constant illumination. The deformation reversal mechanism originates from the molecular sequential descending-ascending charge variation of two coexisting spiropyrans upon irradiation, resulting in a macroscale volumetric contraction-expansion of the hydrogels. Hydrogel film actuators were developed to display complex temporary bidirectional shape transformations and self-regulated reversal rolling under constant illumination. Our work represents an innovative strategy for programming complex shape transformations of homogeneous hydrogels using a single constant stimulus.
能够响应外部刺激而重新配置的环境适应性水凝胶在仿生驱动和软机器人领域展现出了巨大潜力。先前的研究主要集中在异质结构水凝胶的精密设计或外部刺激的复杂操控上,而在恒定刺激下实现均质水凝胶的自我调节反向形状变形一直具有挑战性。在此,我们报告了一种结构均质水凝胶的分子设计,该水凝胶同时包含两种螺吡喃,在持续光照下表现出自我调节的瞬态变形反转。变形反转机制源于两种共存螺吡喃在光照下分子电荷的顺序降升变化,导致水凝胶发生宏观体积收缩 - 膨胀。水凝胶薄膜致动器得以开发,可在持续光照下展示复杂的临时双向形状转变和自我调节的反向滚动。我们的工作代表了一种创新策略,即使用单一恒定刺激对均质水凝胶的复杂形状转变进行编程。