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Graphene-coated meshes for electroactive flow control devices utilizing two antagonistic functions of repellency and permeability

机译:用于电活性流量控制装置的石墨烯涂层网眼,具有排斥和渗透性的两种对抗功能

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The wettability of graphene on various substrates has been intensively investigated for practical applications including surgical and medical tools, textiles, water harvesting, self-cleaning, oil spill removal and microfluidic devices. However, most previous studies have been limited to investigating the intrinsic and passive wettability of graphene and graphene hybrid composites. Here, we report the electrowetting of graphene-coated metal meshes for use as electroactive flow control devices, utilizing two antagonistic functions, hydrophobic repellency versus liquid permeability. Graphene coating was able to prevent the thermal oxidation and corrosion problems that plague unprotected metal meshes, while also maintaining its hydrophobicity. The shapes of liquid droplets and the degree of water penetration through the graphene-coated meshes were controlled by electrical stimuli based on the functional control of hydrophobic repellency and liquid permeability. Furthermore, using the graphene-coated metal meshes, we developed two active flow devices demonstrating the dynamic locomotion of water droplets and electroactive flow switching.
机译:石墨烯在各种基材上的润湿性已得到广泛研究,以用于包括外科手术和医疗工具,纺织品,集水,自清洁,除油和微流体装置在内的实际应用。但是,大多数先前的研究仅限于研究石墨烯和石墨烯杂化复合材料的固有和被动润湿性。在这里,我们报告了石墨烯涂层的金属网的电润湿性,它用作电活性流量控制装置,利用了两种拮抗功能,疏水性与液体渗透性。石墨烯涂层能够防止困扰未保护金属网的热氧化和腐蚀问题,同时还能保持其疏水性。基于疏水性和液体渗透性的功能控制,通过电刺激来控制液滴的形状和水通过石墨烯涂层的网的渗透程度。此外,使用涂有石墨烯的金属网,我们开发了两种主动流动装置,展示了水滴的动态运动和电活性流动转换。

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