Zhang Zhi-Hui, Wang Hu-Jun, Liang Yun-Hong, Li Xiu-Juan, Ren Lu-Quan, Cui Zhen-Quan, Luo Cheng
The Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun, 130022, People's Republic of China.
State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun, 130022, People's Republic of China.
Sci Rep. 2018 Mar 1;8(1):3869. doi: 10.1038/s41598-018-22241-9.
Superhydrophobic surfaces have great potential for application in self-cleaning and oil/water separation. However, the large-scale practical applications of superhydrophobic coating surfaces are impeded by many factors, such as complicated fabrication processes, the use of fluorinated reagents and noxious organic solvents and poor mechanical stability. Herein, we describe the successful preparation of a fluorine-free multifunctional coating without noxious organic solvents that was brushed, dipped or sprayed onto glass slides and stainless-steel meshes as substrates. The obtained multifunctional superhydrophobic and superoleophilic surfaces (MSHOs) demonstrated self-cleaning abilities even when contaminated with or immersed in oil. The superhydrophobic surfaces were robust and maintained their water repellency after being scratched with a knife or abraded with sandpaper for 50 cycles. In addition, stainless-steel meshes sprayed with the coating quickly separated various oil/water mixtures with a high separation efficiency (>93%). Furthermore, the coated mesh maintained a high separation efficiency above 95% over 20 cycles of separation. This simple and effective strategy will inspire the large-scale fabrication of multifunctional surfaces for practical applications in self-cleaning and oil/water separation.
超疏水表面在自清洁和油/水分离方面具有巨大的应用潜力。然而,超疏水涂层表面的大规模实际应用受到许多因素的阻碍,如复杂的制备工艺、含氟试剂和有毒有机溶剂的使用以及较差的机械稳定性。在此,我们描述了一种成功制备的无氟多功能涂层,该涂层无需使用有毒有机溶剂,可通过刷涂、浸涂或喷涂的方式涂覆在载玻片和不锈钢网上作为基底。所制备的多功能超疏水超亲油表面(MSHOs)即使被油污染或浸泡在油中仍具有自清洁能力。超疏水表面坚固耐用,在用刀划伤或用砂纸摩擦50次后仍保持其拒水性能。此外,喷涂有该涂层的不锈钢网能够快速分离各种油/水混合物,分离效率高(>93%)。此外,在20次分离循环中,涂覆的网保持了高于95%的高分离效率。这种简单有效的策略将推动多功能表面的大规模制备,以用于自清洁和油/水分离的实际应用。