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Inorganic-Organic Thiol-ene Coated Mesh for Oil/Water Separation

机译:用于油水分离的无机有机硫醇涂层网

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摘要

A highly efficient mesh for oil/water separation was fabricated by using a superhydrophobic and superoleophilic coating of thiol-ene hybrid, consisting of pentaerythritol tetra(3-mercaptopropionate) (PETMP), 2,4,6,8-tetramethyl-2,4,6,8-tetravinylcyclotetrasiloxane (TMTVSi), and hydrophobic fumed silica nanoparticles, via a simple two-step fabrication process. Spray deposition and UV curing photo-polymerization were sequentially performed, during which solvent evaporation provides microscale roughness while nanoparticle aggregation forms nanoscale roughness. The hierarchical morphologies were stabilized after UV curing photopolymerization. High contact angle (>150 degrees) and low roll-off angle (<5 degrees) were achieved due to the multiscale roughness structure of the hierarchical morphologies. These coatings also have excellent chemical resistance, as well as temperature and pH stability, after curing.
机译:通过使用硫醇-烯杂化物的超疏水和超亲油涂层制备了用于油/水分离的高效筛网,该涂层由季戊四醇四(3-巯基丙酸酯)(PETMP),2,4,6,8-四甲基-2,4组成,6,8-四乙烯基环四硅氧烷(TMTVSi)和疏水性气相二氧化硅纳米粒子,通过简单的两步制造过程即可。依次进行喷雾沉积和UV固化光聚合,在此期间,溶剂蒸发可提供微米级的粗糙度,而纳米粒子聚集形成纳米级的粗糙度。 UV固化光聚合后,稳定了分层形态。由于分层形态的多尺度粗糙度结构,实现了高接触角(> 150度)和低滚降角(<5度)。固化后,这些涂料还具有出色的耐化学性以及温度和pH稳定性。

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