Article ID Journal Published Year Pages File Type
4985039 Journal of Colloid and Interface Science 2017 10 Pages PDF
Abstract

Superhydrophobic materials have drawn great attention due to its' remarkable non-wetting properties and applications in many fields. In this paper, we synthesize a hollow superhydrophobic SiO2 powder by typical template method and self-assembly functionalization. Robustness of many superhydrophobic surfaces has become the development bottleneck for industrial applications. Aiming at this problem, the adhesive epoxy resin is specially taken to use as the binding layer between superhydrophobic SiO2 powder and substrates to create robust superhydrophobic coating. The mechanical durability of the obtained superhydrophobic coating is evaluated by a cyclic sandpaper abrasion. Also, the chemical stability of this superhydrophobic coating is assessed by exposuring it to different pH conditions and UV irradiation, respectively. Significantly, because of the special structure and superhydrophobicity/superoleophilicity of the hollow microspheres, these hollow superhydrophobic SiO2 powders manifest great oil-adsorbing capacity, which thus can be used to separate oil/water mixtures and remove oil from oil-in-water emulsions.

Graphical abstractMultifunctional hollow superhydrophobic SiO2 microspheres created by template method and self-assembly functionalization can be used in stable superhydrophobic coating and removal of oil from water.Download high-res image (77KB)Download full-size image

Related Topics
Physical Sciences and Engineering Chemical Engineering Colloid and Surface Chemistry
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