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Superwetting interfaces for oil/water separation

机译:油/水分离的超雨衣界面

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Superhydrophobic coatings have been applied in various fields. The materials used in the preparation of superhydrophobic coatings have attracted the attention of scholars. Due to the harm of fluorine-containing substances with low surface energy to the environment, fluorine-free superhydrophobic coatings have become a hotspot in the research field. Herein, a fluorine-free superhydrophobic coating with oil/water separation was made by a solution immersion way. The fluorine-free copolymer and polydimethylsiloxane (PDMS)/SiO 2 nanoparticles (NPs) were mixed to prepare a composite solution, and the superhydrophobic surface was obtained on the paper by a dipping method. The scanning electron microscope, x-ray photoelectron spectrometer, 1 H nuclear magnetic resonance, and Fourier transform infrared were used to study the surface characteristics and structural composition of the superhydrophobic material. The research proved that the copolymer and PDMS/SiO 2 NPs were successfully coated on the paper surface, and the rough structure of the superhydrophobic surface was also attributed to the introduction of the copolymer and PDMS/SiO 2 NPs. The evaluation of the coating has proved its excellent hydrophobicity, oil/water separation performance, and self-cleaning performance. The coating is a sustainable and environmentally friendly superhydrophobic material that can be used in packaging, construction, petrochemical, and other industries.
机译:超疏水涂层已应用于各种领域。用于制备超疏水涂层的材料引起了学者的注意。由于含氟物质与环境能量低的含氟物质造成环境,无氟超疏水涂层已成为研究领域的热点。在此,通过溶液浸渍方式制备具有油/水分离的无氟的超疏水涂层。将氟共聚物和聚二甲基硅氧烷(PDMS)/ SiO 2纳米颗粒(NPS)混合以制备复合溶液,通过浸渍法在纸上获得超疏水表面。扫描电子显微镜,X射线光电子光谱仪,1 H核磁共振和傅里叶变换红外线用于研究超疏水材料的表面特性和结构组成。该研究证明,共聚物和PDMS / SiO 2 NP成功地涂布在纸张表面上,超疏水表面的粗糙结构也归因于引入共聚物和PDMS / SiO 2 NPS。涂层的评价已证明其优异的疏水性,油/水分离性能和自清洁性能。涂层是可持续和环保的超疏水材料,可用于包装,建筑,石化等行业。

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