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Highly Adaptable and Biocompatible Octopus‐Like Adhesive Patches with Meniscus‐Controlled Unfoldable 3D Microtips for Underwater Surface and Hairy Skin

机译:具有高度适应性和生物相容性的章鱼状贴剂具有弯月面控制的可折叠3D微尖适用于水下表面和毛发皮肤

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摘要

Adhesion capabilities of various skin architectures found in nature can generate remarkable physical interactions with their engaged surfaces. Among them, octopus suckers have unique hierarchical structures for reversible adhesion in dry and wet conditions. Here, highly adaptable, biocompatible, and repeatable adhesive patches with unfoldable, 3D microtips in micropillars inspired by the rim and infundibulum of octopus suction cup are presented. The bioinspired synthetic adhesives are fabricated by controlling the meniscus of a liquid precursor in a simple molding process without any hierarchical assemblies or additional surface treatments. Experimental and theoretical studies are investigated upon to increase the effective contact area between unfoldable microtips of devices, and enhance adhesion performances and adaptability on a Si wafer in both dry and underwater conditions (max. 11 N cm−2 in pull‐off strength) as well as on a moist pigskin (max. 14.6 mJ peeling energy). Moreover, the geometry‐controlled microsuckers exhibit high‐repeatability (over 100 cycles) in a pull‐off direction. The adhesive demonstrates stable attachments on a moist, hairy, and rough skin, without any observable chemical residues.
机译:在自然界中发现的各种皮肤结构的粘合能力会与其接合表面产生显着的物理相互作用。其中,章鱼吸盘具有独特的分层结构,在干燥和潮湿条件下均可逆转。在这里,展示了章鱼吸盘的边缘和漏斗所启发的高度适应性强,生物相容性强且可重复的贴剂,其微柱中具有不可折叠的3D微尖端。通过在简单的模制过程中控制液体前体的弯月面而无需任何分层组装或额外的表面处理,即可制造出具有生物灵感的合成粘合剂。进行了实验和理论研究,以增加器件的不可折叠微尖端之间的有效接触面积,并增强在干燥和水下条件下(最大11 N cm −2 )对Si晶片的粘合性能和适应性。剥离强度)和湿润的猪皮(最大14.6 mJ剥离力)。此外,受几何形状控制的微型吸盘在拉出方向上显示出高重复性(超过100个循环)。该胶粘剂在湿润,多毛和粗糙的皮肤上显示出稳定的附着力,没有任何可观察到的化学残留物。

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