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Papillaes-enhanced hydrophobicity of large-sized polytetrafluoroethylene-polyphenylene sulfite soft film prepared by layer-by-layer construction

机译:层状结构制备的大尺寸聚四氟乙烯-亚苯基亚硫酸盐软膜的乳头增强疏水性

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Large-sized superhydrophobic soft film with hierarchical structures were prepared by combining papillaes on the polytetrafluoroethylene-polyphenylene sulfite (PTFE-PPS) surface via layer-by-layer construction on the glass substrate and heat treatment processes, therein, the papillaes were formed by 0.1 μm PTFE coated on the pollen grains. The water contact angles (CAs) and sliding angles (SAs) of the films are strongly dependent on the number density of the papillaes on the PTFE-PPS surface. A superhydrophobic surface with a water CA = 151.5° and SA=4° was obtained when the number density was about 649 mm"2. The papillaes with micro/submicroscale structures play an important role in the formation of the superhydrophobic surface and can change Wenzel-type surface into Cassie-Baxter-type surface. The condensation of water vapor on the Cassie-Baxter-type PTFE-PPS film is much more difficult than that of on the Wenzel-type film. Our method may develop into a facile method to prepare large-sized soft film with low cost, which limited only by the size of the loading substrates.
机译:通过在玻璃基板上逐层构造和热处理工艺,将聚四氟乙烯-聚亚苯基亚硫酸盐(PTFE-PPS)表面上的乳突结合在一起,制备多层结构的超疏水软膜,其中乳突的形成量为0.1 μmPTFE涂在花粉粒上。薄膜的水接触角(CAs)和滑动角(SAs)强烈取决于PTFE-PPS表面上乳头的数量密度。当数密度约为649 mm“ 2时,获得水CA = 151.5°和SA = 4°的超疏水表面。具有微/亚微米级结构的乳头在超疏水表面的形成中起重要作用,并且可以改变Wenzel型表面变成Cassie-Baxter型表面,Cassie-Baxter型PTFE-PPS膜上的水蒸气凝结要比Wenzel型膜上的凝结困难得多,我们的方法可能发展为一种简便的方法以低成本制备大尺寸的软膜,这仅受装载基板尺寸的限制。

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