首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >In situ electric-driven reversible switching of water-droplet adhesion on a superhydrophobic surface
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In situ electric-driven reversible switching of water-droplet adhesion on a superhydrophobic surface

机译:超疏水表面上水滴附着力的原位电驱动可逆转换

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摘要

An intelligent superhydrophobic surface was prepared using a breath figure and plasma etching method. The new surface features an in situ fully electric-driven switching of superhydrophobic adhesion, which can be switched more than ten times, from high to low, in a reversible fashion. In addition, the adhesion of insulation type polyaniline (PI) superhydrophobic films and conductivity type poly-3-hexylthiophene (P3HT) superhydrophobic films was also systematically studied by applied voltage and droplet transfer was achieved on the P3HT surface. Furthermore, the detailed principles are discussed, which might shed light on efficient exploitation of superhydrophobic liquid/solid interfaces for smart microfluidic control, transport of microdroplets, biochemical separation, smart devices and localized chemical reactions.
机译:使用呼吸图和等离子体蚀刻方法制备了智能的超疏水表面。新的表面具有超疏水性附着力的原位全电动驱动切换,可以从高到低的十次可逆方式切换。此外,还通过施加电压系统地研究了绝缘型聚苯胺(PI)超疏水性薄膜与导电型聚-3-己基噻吩(P3HT)超疏水性薄膜的粘附性,并在P3HT表面实现了液滴转移。此外,讨论了详细的原理,这可能为有效利用超疏水性液体/固体界面进行智能微流控,微滴运输,生化分离,智能设备和局部化学反应提供了启示。

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