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Evidence for van der Waals adhesion in gecko setae

机译:壁虎科中范德华附着力的证据

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Geckos have evolved one of the most versatile and effective adhesives known. The mechanism of dry adhesion in the millions of setae on the toes of geckos has been the focus of scientific study for over a century. We provide the first direct experimental evidence for dry adhesion of gecko setae by van der Waals forces, and reject the use of mechanisms relying on high surface polarity, including capillary adhesion. The toes of live Tokay geckos were highly hydrophobic, and adhered equally well to strongly hydro-phobic and strongly hydrophilic, polarizable surfaces. Adhesion of a single isolated gecko seta was equally effective on the hydro-phobic and hydrophilic surfaces of a microelectro-mechanical systems force sensor. A van der Waals mechanism implies that the remarkable adhesive properties of gecko setae are merely a result of the size and shape of the tips, and are not strongly affected by surface chemistry. Theory predicts greater adhesive forces simply from subdividing setae to increase surface density, and suggests a possible design principle underlying the repeated, convergent evolution of dry adhesive microstructures in gecko, anoles, skinks, and insects. Estimates using a standard adhesion model and our measured forces come remarkably close to predicting the tip size of Tokay gecko seta. We verified the dependence on size and not surface type by using physical models of setal tips nanofabricated from two different materials. Both artificial setal tips stuck as predicted and provide a path to manufacturing the first dry, adhesive microstructures.
机译:壁虎已经发展成为已知的最通用和最有效的粘合剂之一。数百年来,在壁虎脚趾上数百万个刚毛科中的干附着机制一直是科学研究的重点。我们提供了范德华力对壁虎科的干附着力的第一个直接实验证据,并拒绝使用依赖于高表面极性的机制,包括毛细管附着力。活的Tokay壁虎的脚趾具有很高的疏水性,并且同样能很好地附着在强疏水性和强亲水性的可极化表面上。单个隔离壁虎Seta的附着力在微机电系统力传感器的疏水和亲水表面上均有效。 Van der Waals机制表明壁虎科的显着粘附特性仅仅是尖端大小和形状的结果,而不受表面化学的强烈影响。理论仅是通过细分刚毛来增加表面密度就可以预测更大的粘附力,并提出了一种可能的设计原理,它是壁虎,Anole,石龙子和昆虫中干燥的粘合剂微观结构不断重复收敛的基础。使用标准附着力模型进行的估算和我们测得的力非常接近预测Tokay壁虎seta的尖端尺寸。我们通过使用由两种不同材料制成的纳米定形尖端的物理模型,验证了对尺寸而非表面类型的依赖性。这两个人造后牙尖都按预期方式卡住,并提供了制造第一批干燥的粘合剂微结构的途径。

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