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Functional fluorination agents for opposite extreme wettability coatings with robustness, water splash inhibition, and controllable oil transport

飞溅 润湿 超亲水性 涂层 稳健性(进化) 石油泄漏 砂纸 超疏水涂料 渗透(战争) 纳米技术 接触角 化学工程 复合材料 材料科学 化学 石油工程 环境科学 机械工程 工程类 运筹学
作者
Cai Long,Yongquan Qing,Kai An,Xiao Long,Chen Liu,Shuo Shang,Chuanning Yang,Changsheng Liu
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:415: 128895-128895 被引量:6
标识
DOI:10.1016/j.cej.2021.128895
摘要

• OEWC is achieved by synergistic enhancement between the dispersed phase and continuous phase. • We developed two opposite extreme wettability coatings by changing only fluorination agent. • The SLIPS-SC surface exhibits splash inhibition and recovery of water droplets along specific parthways. • The SLIPS-CSC surface shows controllable oil transport along the desired path. Extreme wettability coatings with repellent-liquids have attracted considerable attention due to their various advantages. Such coatings are not only restricted by poor robustness, but it is difficult to achieve for controlled liquid transport and inhibiting liquid splash due to allowing the droplet to roll-off and bounce, limiting functional applications. Here, we developed two opposite extreme wettability coaitngs with a superhydrophobic-oleophilic coating (SC) and coexisting superoleophobic-superhydrophilic coating (CSC), by changing only the type of fluorination agent. These coatings have shown strong mechanical robustness under sandpaper abrasion, washing, finger-wipe, knife-scratch, and tape-peel due to the synergistic enhancement between native rosin and grafted nanoparticles. Surprisingly, the perfluorinated liquid-infused SC surface could achieve a smart interface for inhibiting splash and recovery of water droplets along with the five-pointed star/branch pattern. Besides, oil droplets could be transported controllable along the desired sinusoidal shape and letter “YOU” wetted path on the water-infused CSC surface by dynamic control. Undoubtedly, these can have a broad applicability spectrum in the micro-fluidics and precision industry.

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