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用于高效溶剂-水分离的双尺度二氧化钛和二氧化硅颗粒与氟代烷基硅烷和聚二甲基硅氧烷超疏水/超亲油涂层的组合

Dual-scale TiO and SiO particles in combination with a fluoroalkylsilane and polydimethylsiloxane superhydrophobic/superoleophilic coating for efficient solvent-water separation.

作者信息

Heale Frances L, Einhorn Maud, Page Kristopher, Parkin Ivan P, Carmalt Claire J

机构信息

Department of Chemistry, University College London 20 Gordon Street London WC1H 0AJ UK

出版信息

RSC Adv. 2019 Jun 28;9(35):20332-20340. doi: 10.1039/c9ra02700a. eCollection 2019 Jun 25.

Abstract

Surfaces that have unique wettabilities and are simultaneously superhydrophobic with water contact angles > 150°, and superoleophilic with oil contact angles < 5°, are of critical importance in the oil/solvent-water separation field. This work details the facile preparation of highly efficient oil-water separation devices that successfully combine hierarchical surface roughening particles and low surface energy components with porous substrates. Coatings were generated using TiO and hydrophobic-SiO micro/nanoparticle loadings which were then embedded within polydimethylsiloxane, commercially known as Sylgard® 184, and 1,1,2,2-perfluorooctyltriethoxysilane (FAS) polymer mixtures. The resulting slurries were dip coated onto copper meshes with varying pore diameters (30, 60 and 100 meshes had 595, 250 and 149 μm pore dimensions respectively). Functional testing proved that mesh substrates coated in the lowest Sylgard® 184 : FAS polymer ratio formulations displayed heightened water repellency and retained their superoleophilic properties upon repeat testing. The largest average water contact angle of 145 ± 1°, was recorded on a copper 30 mesh substrate with a coating comprising H-SiO microparticles and TiO nanoparticles in a 1 : 9 polymer mixture of Sylgard® and FAS. The coating's extreme oil affinity was supported by high solvent-water separation efficiencies (≥99%) which withstood numerous testing/washing cycles.

摘要

具有独特润湿性的表面,同时对水呈超疏水(水接触角>150°)且对油呈超亲油(油接触角<5°),在油/溶剂-水分离领域至关重要。这项工作详细介绍了高效油水分离装置的简便制备方法,该装置成功地将分级表面粗糙化颗粒和低表面能组分与多孔基材相结合。使用TiO和疏水性SiO微/纳米颗粒负载生成涂层,然后将其嵌入聚二甲基硅氧烷(商品名为Sylgard® 184)和1,1,2,2-全氟辛基三乙氧基硅烷(FAS)聚合物混合物中。将所得浆料浸涂到具有不同孔径的铜网上(30目、60目和100目的铜网孔径分别为595μm、250μm和149μm)。功能测试证明,以最低的Sylgard® 184 : FAS聚合物比例配方涂覆的网基材表现出更高的拒水性,并且在重复测试后仍保持其超亲油性能。在一个30目铜网基材上记录到最大平均水接触角为145±1°,该基材的涂层由H-SiO微粒和TiO纳米颗粒组成,Sylgard®和FAS的聚合物混合物比例为1 : 9。涂层对油的极强亲和力得到了高溶剂-水分离效率(≥99%)的支持,并且该效率在多次测试/洗涤循环后仍能保持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44a0/9065573/862e855fdfc8/c9ra02700a-f1.jpg

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