School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240 (P. R. China).
Angew Chem Int Ed Engl. 2015 Dec 7;54(50):15165-9. doi: 10.1002/anie.201507074. Epub 2015 Oct 6.
Superhydrophobic and superhydrophilic surfaces are of great interest because of a large range of applications, for example, as antifogging and self-cleaning coatings, as antibiofouling paints for boats, in metal refining, and for water-oil separation. An aqueous ink based on three-dimensional graphene monoliths (Gr) can be used for constructing both superhydrophobic and superhydrophilic surfaces on arbitrary substrates with different surficial structures from the meso- to the macroscale. The surface wettability of a Gr-coated surface mainly depends on which additional layers (air for a superhydrophobic surface and water for a superhydrophilic surface) are adsorbed on the surface of the graphene sheets. Switching a Gr-coated surface between being superhydrophobic and superhydrophilic can thus be easily achieved by drying and prewetting with ethanol. The Gr-based superhydrophobic membranes or films should have great potential as efficient separators for fast and gravity-driven oil-water separation.
超疏水和超亲水表面因其广泛的应用而备受关注,例如,作为防雾和自清洁涂层、船舶用防生物污染涂料、金属精炼以及油水分离。一种基于三维石墨烯块体 (Gr) 的水性油墨可用于构建具有从中等到宏观表面结构的任意基底上的超疏水和超亲水表面。Gr 涂层表面的润湿性主要取决于吸附在石墨烯片表面上的附加层(超疏水表面为空气,超亲水表面为水)。因此,通过干燥和用乙醇预润湿,很容易在 Gr 涂层表面在超疏水和超亲水之间切换。基于 Gr 的超疏水膜或膜应该作为高效的分离器具有很大的潜力,用于快速和重力驱动的油水分离。