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通过“涂料+胶黏剂”法实现坚固且超疏水表面改性:在油污自清洁和油水分离方面的应用。

Robust and Superhydrophobic Surface Modification by a "Paint + Adhesive" Method: Applications in Self-Cleaning after Oil Contamination and Oil-Water Separation.

机构信息

Faculty of Systems Science and Technology, Akita Prefectural University , Akita 015-0055, Japan.

College of Petrochemical Technology, Lanzhou University of Technology , Lanzhou 730050, China.

出版信息

ACS Appl Mater Interfaces. 2016 Jul 13;8(27):17659-67. doi: 10.1021/acsami.6b04108. Epub 2016 Jun 28.

DOI:10.1021/acsami.6b04108
PMID:27286474
Abstract

Conventional superhydrophobic surfaces have always depended on expensive, sophisticated, and fragile roughness structures. Therefore, poor robustness has turned into the bottleneck for large-scale industrial applications of the superhydrophobic surfaces. To handle this problem, a superhydrophobic surface with firm robustness urgently needs to be developed. In this work, we created a versatile strategy to fabricate robust, self-cleaning, and superhydrophobic surfaces for both soft and hard substrates. We created an ethanol based suspension of perfluorooctyltriethoxysilane-mdodified calcium carbonate nanoparticles which can be sprayed onto both hard and soft substrates to form superhydrophobic surfaces. For all kinds of substrates, spray adhesive was directly coated onto abluent substrate surfaces to promote the robustness. These superhydrophobic surfaces showed remarkable robustness against knife scratch and sandpaper abrasion, while retaining its superhydrophobicity even after 30 abrasion cycles with sandpaper. What is more, the superhydrophobic surfaces have shown promising potential applications in self-cleaning and oil-water separation. The surfaces retained their self-cleaning property even immersed in oil. In addition to oil-water separation, the water contents in oil after separation of various mixtures were all below 150 ppm, and for toluene even as low as 55 ppm. Furthermore, the as-prepared device for oil-water separation could be cycled 6 times and still retained excellent oil-water separation efficiency.

摘要

传统的超疏水表面总是依赖于昂贵、复杂和脆弱的粗糙度结构。因此,较差的鲁棒性已成为超疏水表面大规模工业应用的瓶颈。为了解决这个问题,迫切需要开发具有坚固耐用性的超疏水表面。在这项工作中,我们开发了一种通用策略,用于制造坚固、自清洁和超疏水的软质和硬质基底表面。我们制备了一种基于乙醇的全氟辛基三乙氧基硅烷-mdmodified 碳酸钙纳米粒子悬浮液,可以喷涂在硬质和软质基底上,形成超疏水表面。对于各种基底,直接将喷涂胶涂覆在洁净基底表面上以提高其鲁棒性。这些超疏水表面具有出色的耐刀刮和砂纸磨损的鲁棒性,即使经过 30 次砂纸磨损循环后仍保持超疏水性。更重要的是,这些超疏水表面在自清洁和油水分离方面显示出了有前景的应用潜力。即使浸泡在油中,表面仍保持自清洁性能。除了油水分离外,各种混合物分离后的油中的含水量均低于 150ppm,对于甲苯甚至低至 55ppm。此外,所制备的油水分离装置可循环使用 6 次,仍保持优异的油水分离效率。

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