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光驱动水凝胶致动器具有可控变形和光催化活性。

Light-Fueled Hydrogel Actuators with Controlled Deformation and Photocatalytic Activity.

机构信息

Jiangsu Key Laboratory of Advanced Metallic Materials, School of Materials Science and Engineering, Southeast University, Nanjing, 211189, P. R. China.

Department of Chemical Engineering, and Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.

出版信息

Adv Sci (Weinh). 2022 Dec;9(34):e2204730. doi: 10.1002/advs.202204730. Epub 2022 Oct 17.

Abstract

Hydrogel actuators have shown great promise in underwater robotic applications as they can generate controllable shape transformations upon stimulation due to their ability to absorb and release water reversibly. Herein, a photoresponsive anisotropic hydrogel actuator is developed from poly(N-isopropylacrylamide) (PNIPAM) and gold-decorated carbon nitride (Au/g-C N ) nanoparticles. Carbon nitride nanoparticles endow hydrogel actuators with photocatalytic properties, while their reorientation and mobility driven by the electrical field provide anisotropic properties to the surrounding network. A variety of light-fueled soft robotic functionalities including controllable and programmable shape-change, gripping, and locomotion is elicited. A responsive flower-like photocatalytic reactor is also fabricated, for water splitting, which maximizes its energy-harvesting efficiency, that is, hydrogen generation rate of 1061.82 µmol g h , and the apparent quantum yield of 8.55% at 400 nm, by facing its light-receiving area adaptively towards the light. The synergy between photoactive and photocatalytic properties of this hydrogel portrays a new perspective for the design of underwater robotic and photocatalytic devices.

摘要

水凝胶致动器在水下机器人应用中显示出巨大的潜力,因为它们能够可逆地吸收和释放水,从而在受到刺激时产生可控的形状变换。本文通过聚异丙基丙烯酰胺(PNIPAM)和金修饰的碳氮化物(Au/g-C3N4)纳米粒子开发了一种光响应各向异性水凝胶致动器。氮化碳纳米粒子赋予水凝胶致动器光催化性能,而其在电场驱动下的重定向和迁移为周围网络提供各向异性。引发了多种光燃料软机器人功能,包括可控和可编程的形状变化、夹持和运动。还制备了一个响应式花状光催化反应器,用于水分解,通过自适应地将其光接收区域面向光,最大程度地提高了其能量收集效率,即在 400nm 时的产氢率为 1061.82µmol g h,表观量子产率为 8.55%。这种水凝胶的光活性和光催化性能之间的协同作用为水下机器人和光催化设备的设计提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c772/9731706/80053c28ebf5/ADVS-9-2204730-g007.jpg

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