通过化学气相沉积 TMCS 实现超疏水不锈钢网的有效油水分离

S. Latthe, Akshay R. Jundle, Prashant Yadav, Chandrakant Patil, U. Mote, Rajaram S. Sutar, Shanhu Liu
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引用次数: 0

摘要

使用三甲基氯硅烷(TMCS)通过化学气相沉积(CVD)方法制造超疏水不锈钢(SS)网,用于分离油水混合物。为有效分离油水,人们创造了具有超疏水特性的多孔材料。由于超疏水涂层能够有效分离油水,因此备受关注。在容器中加入 50 毫升正己烷,其中含有 1 毫升 TMCS。低表面能的硅烷成分会在网表面形成高度粗糙的结构。最佳的网格涂层具有超疏水性,对油有很强的亲和力,水接触角为 162 ± 2°。对于不同的油水混合物,涂层网的分离效率超过 97.8%。研究得出结论,S-3 样品具有良好的机械稳定性,能经受胶带剥离、砂纸磨损、弯曲、折叠和扭曲等各种测试。它能大规模高效分离油水混合物
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Superhydrophobic Stainless Steel Mesh through Chemical Vapour Deposition of TMCS for Effective Oil-Water Separation
To Fabricate the superhydrophobic Stainless Steel (SS) mesh using Trimethylchlorosilane (TMCS) through a Chemical Vapor Deposition (CVD) method for the oil-water mixture separation The frequent oil spills have a devastating impact on marine ecosystems and the environment. The porous materials with superhydrophobic properties have been created to separate oil and water effectively. Due to their ability to effectively separate oil and water, superhydrophobic coatings have gained significant attention. The cleaned stainless-steel mesh was put on a stand and covered with a glass container. Within the container, 50 mL of hexane, which contained 1 mL of TMCS, was added. The mesh was then left for 3 h to undergo the CVD process The silane content with low surface energy creates a highly rough structure on the mesh surface. The optimal mesh coating is superhydrophobic, having a strong affinity to oil and a water contact angle of 162 ± 2°. The coated mesh has shown a separation efficiency of over 97.8% for different oil-water mixtures. The coatings sustain their superhydrophobicity up to 30 tape peels and 40 times sandpaper abrasion, indicating good mechanical durability. The study concludes that the S-3 sample is mechanically stable and can withstand various tests such as adhesive tape peeling, sandpaper abrasion, bending, folding, and twisting. It efficiently separates oil and water mixtures on a large scale with high efficacy
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