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Fabrication of a superhydrophobic mesh based on PDMS/SiO2 nanoparticles/PVDF microparticles/KH-550 by one-step dip-coating method

机译:一步浸涂法制备基于PDMS / SiO2纳米颗粒/ PVDF微粒/ KH-550的超疏水网

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In this study, a facile one-step dip-coating approach was reported for fabrication of superhydrophobic copper mesh by using PDMS, SiO _(2) nanoparticles, PVDF microparticles and a couple agent 3-aminopropyltriethoxysilane (KH-550). It is found that undesirable SiO _(2) agglomeration was obviously reduced by introducing KH-550 and PVDF microparticles. The KH-550 acts as the bridge-linker and binds SiO _(2) , PVDF and PDMS together. The as-prepared superhydrophobic mesh exhibited a promising water contact angle of 160.1° and a small sliding angle of 2.5°. The coating displayed excellent resistance to various pollutants and retained its superhydrophobicity after abrasions (sandpaper abrasion or adhesive tape tear). The strong chemical stability was also observed when the mesh was immersed in various solutions, especially in neutral and alkaline solutions. The applications of the superhydrophobic mesh for quantitative water droplet manipulation and oil spill cleanup were also illustrated. The method is facile and economic, and could be used for large-scale fabrications for industrial applications.
机译:在这项研究中,通过使用PDMS,SiO_(2)纳米粒子,PVDF微粒和偶联剂3-氨丙基三乙氧基硅烷(KH-550)报道了一种用于超疏水铜丝网制造的简便的一步浸涂方法。发现通过引入KH-550和PVDF微粒可以明显减少不良的SiO _(2)团聚。 KH-550用作桥键,将SiO_(2),PVDF和PDMS结合在一起。所制备的超疏水筛网显示出有希望的水接触角为160.1°,滑动角较小,为2.5°。该涂层对各种污染物表现出优异的抵抗力,并且在磨损(砂纸磨损或胶带撕裂)后仍保持其超疏水性。将筛网浸入各种溶液中时,尤其是在中性和碱性溶液中,也观察到了较强的化学稳定性。还说明了超疏水滤网在定量水滴处理和溢油清除中的应用。该方法既简便又经济,可用于工业应用的大规模制造。

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