Adhesion Evolution: Designing Smart Polymeric Adhesive Systems with On-Demand Reversible Switchability

胶粘剂 材料科学 粘附 智能聚合物 仿生学 聚合物 纳米技术 夹持器 自愈水凝胶 计算机科学 高分子化学 复合材料 机械工程 工程类 图层(电子)
作者
Yee Lin Tan,Yi Jing Wong,Nicholas Wei Xun Ong,Yihao Leow,Joey Hui Min Wong,Yi Jian Boo,Rubayn Goh,Xian Jun Loh
出处
期刊:ACS Nano [American Chemical Society]
卷期号:18 (36): 24682-24704 被引量:3
标识
DOI:10.1021/acsnano.4c05598
摘要

Smart polymeric switchable adhesives represent a rapidly emerging class of advanced materials, exhibiting the ability to undergo on-demand transitioning between "On" and "Off" adhesion states. By selectively tuning external stimuli triggers (including temperature, light, electricity, magnetism, and chemical agents), we can engineer these materials to undergo reversible changes in their bonding capabilities. The strategic design selection of stimuli is a pivotal factor in the design of switchable adhesive systems. This review outlines recent advancements in the field of smart switchable polymeric adhesives over the past decade with a focus on the selection of stimulus triggers. These systems are further categorized into one of four adhesion switching mechanisms upon initiation by a specific stimuli-trigger: (i) interfacial adhesion, (ii) stiffness, (iii) contact area, or (iv) suction-based switching. Evaluation of adhesion switching performance across systems is primarily made based on three key metrics: (i) maximum adhesion strength, (ii) switch ratio, and (iii) switch time. Different stimuli and mechanisms offer distinct advantages and limitations, influencing the performance characteristics and applicability of these materials across domains such as detachable biomedical devices, robotic grippers, and climbing robots. This review thus offers a perspective on the present advancements and challenges in this emerging field, along with insights into future directions.
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