材料科学
自愈水凝胶
石墨烯
纳米技术
生物相容性
光热治疗
软机器人
弯曲
磁场
夹持器
智能材料
光热效应
执行机构
机器人学
仿生学
磁性纳米粒子
生物相容性材料
人工肌肉
磁选
机电一体化
光电子学
作者
Xinmeng Zhang,Chen Xu,Yiwei Xie,Haoxue Zhu,Wei Shao
标识
DOI:10.1021/acsami.5c23682
摘要
Stimulus-responsive hydrogels have garnered significant interest for their biocompatibility and intelligent actuation capabilities. However, their applications have been constrained by slow response rates and single-mode actuation. To address these limitations, we developed a triple-responsive gradient-structured hydrogel (Fe 3 O 4 –PDA@CG/PNIPAM) via gravity-induced deposition. This hydrogel exhibited rapid responses to the temperature, near-infrared (NIR) light, and magnetic fields. By incorporating Fe 3 O 4 –PDA@CG nanosheets with photothermal conversion capabilities into NIPAM monomers through in situ polymerization, we significantly enhanced the NIR light responsiveness of the hydrogel. Under NIR irradiation, the hydrogel achieved a bending angle of 314° in 40 s. Additionally, it demonstrated 563° bending in 15 s at 60 °C and contactless rapid motion under magnetic field control. Based on these properties, we engineered the Fe 3 O 4 –PDA@CG/PNIPAM hydrogel for applications in smart robotic grasping, temperature-sensitive petal actuation, circuit switching, and contactless object transportation. The excellent photothermal efficiency, cycling stability, and scalable preparation method position the hydrogel as a promising candidate for soft robotics, biomedicine, and bioinspired devices.
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