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用于潮湿和水下表面的仿生可逆水凝胶粘合剂。

Bioinspired reversible hydrogel adhesives for wet and underwater surfaces.

作者信息

Yi Hoon, Lee Sung Ho, Seong Minho, Kwak Moon Kyu, Jeong Hoon Eui

机构信息

Department of Mechanical Engineering, Ulsan National Institute of Science and Technology, Ulsan 689-798, Republic of Korea.

出版信息

J Mater Chem B. 2018 Dec 28;6(48):8064-8070. doi: 10.1039/c8tb02598c. Epub 2018 Nov 13.

Abstract

Stable and reversible adhesion to wet surfaces is challenging owing to water molecules at the contact interface. In this study, we develop a hydrogel-based wet adhesive, which can exhibit strong and reversible adhesion to wet and underwater surfaces as well as to dry surfaces. The remarkable wet adhesion of the hydrogel adhesive is realized based on a synergetic integration of bioinspired microarchitectures and water-friendly and water-absorbing properties of the polymeric hydrogel. Under dry conditions, the microstructured hydrogel adhesive exhibits strong van der Waals interaction-based adhesion, while under underwater conditions, it can maximize capillary adhesion. Consequently, the hydrogel adhesive exhibits remarkable adhesion strengths for dry, moist, and submerged substrates. Maximum normal and shear adhesion strengths of 423 and 384, 492 and 340, and 253 and 21 kPa are achieved with the hydrogel adhesive for dry, moist, and submerged substrates, respectively. Our results demonstrate that strong wet and underwater adhesion can be achieved only with the hydrogel-based adhesive with simple microscale architecture.

摘要

由于接触界面处存在水分子,实现对潮湿表面的稳定且可逆的粘附具有挑战性。在本研究中,我们开发了一种基于水凝胶的湿粘合剂,它能够对潮湿和水下表面以及干燥表面表现出强且可逆的粘附力。这种水凝胶粘合剂卓越的湿粘附力是基于受生物启发的微观结构与聚合物水凝胶的亲水性和吸水性的协同整合而实现的。在干燥条件下,微观结构的水凝胶粘合剂表现出基于范德华相互作用的强粘附力,而在水下条件下,它能使毛细粘附力最大化。因此,这种水凝胶粘合剂对干燥、潮湿和浸没的基材都表现出显著的粘附强度。该水凝胶粘合剂对干燥、潮湿和浸没基材的最大法向粘附强度和剪切粘附强度分别达到423和384 kPa、492和340 kPa以及253和21 kPa。我们的结果表明,只有具有简单微观结构的基于水凝胶的粘合剂才能实现强大的湿态和水下粘附力。

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