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Surface Modification for Superhydrophilicity and Underwater Superoleophobicity: Applications in Antifog, Underwater Self-Cleaning, and Oil-Water Separation

机译:用于超亲水性和水下超疏油性的表面改性:在防雾剂,水下自清洁和油水分离中的应用

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A facile yet effective surface modification strategy for superhydrophilicity and underwater superoleophobicity was developed by silanization of zwitterionic sulfobetaine silane (SBSi) on oxidized surfaces. The coatings exhibit excellent wetting properties, as indicated by static contact angles of <5 degrees, and long-term stability under exposure to heat and UV irradiation. The SBSi-modified surfaces were employed for applications in antifog, self-cleaning, and oil water separation. The SBSi glasses retained their optical transmittance because of the rapid formation of coalesced water thin films on surfaces in contact with water vapor and moisture. In addition, the underwater oil contact-angle measurements verified the underwater superoleophobicity of the zwitterionic SBSi coatings. The oil spills on the SBSi coating could be readily removed in contact with water to realize the self-cleaning property. Besides, we modified stainless steel wire meshes with SBSi for oil water separation. The optimal oil recovery rate for the oil water mixtures reached >99.5% when using the SBSi-coated meshes with a pore size of 17 mu m. More importantly, the water flux with modified meshes achieved 6.5 x 10(7) L/m(2).h.bar, enabling gravity-driven and energy-saving separation. Consequently, we demonstrated the superhydrophilicity and underwater superoleophobicity of SBSi, offering promise in solving technological problems of interfacial fog, oil spills, and oil water separation and thereby showing great potential in large-scale commercial applications.
机译:通过将两性离子磺基甜菜碱硅烷(SBSi)硅烷化在氧化的表面上,开发了一种用于超亲水性和水下超疏油性的简便而有效的表面改性策略。如<5度的静态接触角所示,涂料具有出色的润湿性能,并且在暴露于热和紫外线照射下具有长期稳定性。 SBSi改性的表面用于防雾,自清洁和油水分离。 SBSi玻璃保留了其透光率,因为在与水蒸气和湿气接触的表面上迅速形成了聚结的水薄膜。另外,水下油的接触角测量证实了两性离子SBSi涂层的水下超疏油性。 SBSi涂层上的溢油可在与水接触时轻松清除,以实现自清洁性能。此外,我们用SBSi改性了不锈钢丝网,用于油水分离。当使用孔径为17μm的SBSi涂层筛网时,油水混合物的最佳采油率达到> 99.5%。更重要的是,改进型滤网的水通量达到6.5 x 10(7)L / m(2).h.bar,从而实现了重力驱动和节能的分离。因此,我们证明了SBSi的超亲水性和水下超疏油性,有望解决界面雾,溢油和油水分离等技术问题,从而在大规模商业应用中显示出巨大的潜力。

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