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Reverse Adhesion of a Gecko-Inspired Synthetic Adhesive Switched by an Ion-Exchange Polymer–Metal Composite Actuator

机译:由离子交换聚合物-金属复合驱动器切换的壁虎启发合成粘合剂的反向粘合。

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摘要

Inspired by how geckos abduct, rotate, and adduct their setal foot toes to adhere to different surfaces, we have developed an artificial muscle material called ion-exchange polymer–metal composite (IPMC), which, as a synthetic adhesive, is capable of changing its adhesion properties. The synthetic adhesive was cast from a Si template through a sticky colloid precursor of poly(methylvinylsiloxane) (PMVS). The PMVS array of setal micropillars had a high density of pillars (3.8 × 103 pillars/mm2) with a mean diameter of 3 µm and a pore thickness of 10 µm. A graphene oxide monolayer containing Ag globular nanoparticles (GO/Ag NPs) with diameters of 5–30 nm was fabricated and doped in an ion-exchanging Nafion membrane to improve its carrier transfer, water-saving, and ion-exchange capabilities, which thus enhanced the electromechanical response of IPMC. After being attached to PMVS micropillars, IPMC was actuated by square wave inputs at 1.0, 1.5, or 2.0 V to bend back and forth, driving the micropillars to actively grip or release the surface. To determine the adhesion of the micropillars, the normal adsorption and desorption forces were measured as the IPMC drives the setal micropillars to grip and release, respectively. Adhesion results demonstrated that the normal adsorption forces were 5.54-, 14.20-, and 23.13-fold higher than the normal desorption forces under 1.0, 1.5, or 2.0 V, respectively. In addition, shear adhesion or friction increased by 98, 219, and 245%, respectively. Our new technique provides advanced design strategies for reversible gecko-inspired synthetic adhesives, which might be used for spiderman-like wall-climbing devices with unprecedented performance.
机译:受壁虎如何绑架,旋转和使脚趾脚趾附着在不同表面上的启发,我们开发了一种称为离子交换聚合物-金属复合材料(IPMC)的人造肌肉材料,该材料可作为合成粘合剂,能够改变它的附着力。合成粘合剂从Si模板通过聚(甲基乙烯基硅氧烷)(PMVS)的粘性胶体前体浇铸而成。固定微型柱的PMVS阵列具有高密度的柱子(3.8×10 3 柱子/ mm 2 ),平均直径为3 µm,孔厚度为10 µm 。制作了包含直径为5–30 nm的Ag球形纳米颗粒(GO / Ag NPs)的氧化石墨烯单层,并掺杂在离子交换的Nafion膜中,以改善其载流子转移,节水和离子交换能力,从而增强了IPMC的机电响应。将IPMC固定在PMVS微型支柱上后,由1.0、1.5或2.0 V的方波输入驱动来回弯曲,从而驱动微型支柱主动抓紧或释放表面。为了确定微柱的粘附力,在IPMC驱动固定微柱抓握和释放时,分别测量正常的吸附力和解吸力。粘附结果表明,在1.0、1.5或2.0 V下,正常吸附力分别比正常解吸力高5.54倍,14.20倍和23.13倍。此外,剪切粘附力或摩擦力分别增加了98%,219%和245%。我们的新技术为可逆壁虎启发的合成胶粘剂提供了先进的设计策略,该胶粘剂可用于具有空前性能的类似蜘蛛侠的爬壁设备。

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