Tan Yee Lin, Wong Yi Jing, Ong Nicholas Wei Xun, Leow Yihao, Wong Joey Hui Min, Boo Yi Jian, Goh Rubayn, Loh Xian Jun
Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, #08-03 Innovis, Singapore 138634, Republic of Singapore.
School of Materials Science and Engineering, Nanyang Technological University (NTU), Singapore 639798, Republic of Singapore.
ACS Nano. 2024 Sep 10;18(36):24682-24704. doi: 10.1021/acsnano.4c05598. Epub 2024 Aug 26.
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.
智能聚合物可切换粘合剂是一类迅速兴起的先进材料,能够在“开启”和“关闭”粘附状态之间按需转换。通过选择性地调节外部刺激触发因素(包括温度、光、电、磁和化学试剂),我们可以设计这些材料,使其粘合能力发生可逆变化。刺激因素的策略性设计选择是可切换粘合剂系统设计中的关键因素。本综述概述了过去十年智能可切换聚合物粘合剂领域的最新进展,重点是刺激触发因素的选择。这些系统在特定刺激触发因素启动后,可进一步分为四种粘附切换机制之一:(i)界面粘附,(ii)刚度,(iii)接触面积,或(iv)基于吸力的切换。对各系统粘附切换性能的评估主要基于三个关键指标:(i)最大粘附强度,(ii)切换比,以及(iii)切换时间。不同的刺激因素和机制具有不同的优点和局限性,影响着这些材料在可拆卸生物医学设备、机器人夹具和攀爬机器人等领域的性能特征和适用性。因此,本综述对这一新兴领域的当前进展和挑战提供了一个视角,并对未来方向提供了见解。