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One step electrochemical fabricating of the biomimetic graphene skins with superhydrophobicity and superoleophilicity for highly efficient oil-water separation

机译:具有超细纤维石墨烯皮肤的一步电化学制造,具有超疏水性和高效性的高效油水分离

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摘要

Materials with superhydrophobic and superoleophilic properties have great application prospects in oil and water separation area, however the ordinarily used methods for the manufacturing of these materials are complicated. In this paper, a facile and efficient procedure of an electrochemical-assisted method for the fabricating of biomimetic graphene skins with superhydrophobicity and superoleophilicity on the surface of the stainless steel mesh used for oil-water separation was presented. The morphology and structure of the skins were studied by SEM, TEM, EDS, FT-IR, XRD, XPS and Raman spectrum. Results have showed that graphene was peeled off and synchronously assembled on the stainless steel mesh in the form of dendritic structure. The dendritic structure was condutive to intercepting a large amount of air in the voids, resulting in superhydrophobic surface with water contact angle up to 150 degrees. The biomimetic graphene skins can separate a series of oil and water mixtures, the separation efficiency was over 97%.
机译:具有超疏水性和超级抑制性质的材料在油和水分离区域具有很大的应用前景,但是通常使用这些材料的制造方法复杂。在本文中,提出了一种用于在用于油水分离的不锈钢网表面上具有超细纤维石墨烯皮,用于油水分离的超细纤维石墨烯皮肤的电化学辅助方法的容易和有效的方法。通过SEM,TEM,EDS,FT-IR,XRD,XPS和拉曼光谱研究了皮肤的形态和结构。结果表明,石墨烯剥离并同步地组装在树突结构形式的不锈钢网上。树枝状结构是截止在空隙中的大量空气的状态,导致过度的水接触角度高达150度。仿生石墨烯皮肤可以分离一系列油和水混合物,分离效率超过97%。

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