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受章鱼启发的用于光/热响应智能贴片的等离子体水凝胶致动器

Plasmonic Hydrogel Actuators for Octopus-Inspired Photo/Thermoresponsive Smart Adhesive Patch.

作者信息

Kim Jeeyoon, Yeom Jeonghee, Ro Yun Goo, Na Geoseong, Jung Woonggyu, Ko Hyunhyub

机构信息

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Republic of Korea.

Department of Biomedical Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Republic of Korea.

出版信息

ACS Nano. 2024 Aug 13;18(32):21364-21375. doi: 10.1021/acsnano.4c05788. Epub 2024 Aug 1.

Abstract

Octopuses are notable creatures that can dynamically adhere to a variety of substrates owing to the efficient pressure control within their suction cups. An octopus' suckers are sealed at the rim and function by reducing the pressure inside the cavity, thereby creating a pressure difference between the ambient environment and the inner cavity. Inspired by this mechanism, we developed a plasmonic smart adhesive patch (Plasmonic AdPatch) with switchable adhesion in response to both temperature changes and near-infrared (NIR) light. The AdPatch incorporates an elastic, nanohole-patterned elastomer that mimics the structure of octopus suckers. Additionally, a monolayer of gold nanostars (GNSs) is coated on the patch, facilitating a NIR light-responsive photothermal effect. A musclelike, thermoresponsive poly(-isopropylacrylamide) (PNIPAM) hydrogel functions as a volumetric actuator to regulate cavity pressure. When exposed to heat or light, the PNIPAM hydrogel shrinks, enabling the AdPatch to achieve strong suction adhesion (134 kPa at 45 °C, 71 kPa at 85 mW cm). Owing to its capability to achieve light-triggered remote adhesion without the need for external pressure, the Plasmonic AdPatch can be employed to transfer ultrathin films and biosensors to fragile organs without causing damage.

摘要

章鱼是一种引人注目的生物,由于其吸盘内有效的压力控制,它们能够动态地附着在各种基质上。章鱼的吸盘在边缘处密封,通过降低腔内压力来发挥作用,从而在周围环境和内腔之间产生压力差。受这种机制的启发,我们开发了一种等离子体智能粘附贴片(Plasmonic AdPatch),它能响应温度变化和近红外(NIR)光实现可切换粘附。该粘附贴片包含一种模仿章鱼吸盘结构的弹性纳米孔图案化弹性体。此外,贴片上涂覆有单层金纳米星(GNSs),有助于产生近红外光响应的光热效应。一种类似肌肉的热响应性聚(N - 异丙基丙烯酰胺)(PNIPAM)水凝胶用作体积致动器来调节腔压力。当暴露于热或光时,PNIPAM水凝胶收缩,使粘附贴片能够实现强吸附粘附(45℃时为134 kPa,85 mW/cm²时为71 kPa)。由于其能够在无需外部压力的情况下实现光触发远程粘附,等离子体粘附贴片可用于将超薄膜和生物传感器转移到脆弱器官而不会造成损伤。

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