Superlyophobic graphene oxide/polydopamine coating under liquid system for liquid/liquid separation, dye removal, and anti-corrosion

It is highly desirable to develop superlyophobic surfaces under liquid system that can act as a versatile platform for separation of both oil/water and oil/oil mixtures and removing dye from water, but it is still hard to achieve. Herein, a graphene oxide/polydopamine (GO/PDA) coating with superlyop...

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Veröffentlicht in:Carbon (New York) 2022-04, Vol.190, p.329-336
Hauptverfasser: Zhu, Xiaotao, Gao, Zhongshuai, Li, Fangchao, Miao, Gan, Xu, Ting, Miao, Xiao, Song, Yuanming, Li, Xiangming, Ren, Guina
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Sprache:eng
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Zusammenfassung:It is highly desirable to develop superlyophobic surfaces under liquid system that can act as a versatile platform for separation of both oil/water and oil/oil mixtures and removing dye from water, but it is still hard to achieve. Herein, a graphene oxide/polydopamine (GO/PDA) coating with superlyophobicity under liquid system was fabricated through the self-polymerization of dopamine anchored on the GO sheet surface. The obtained GO/PDA coating possessed both under-water superoleophobicity and under-oil superhydrophobicity. Utilizing its dual superlyophobicity under an oil/water system, the GO/PDA coated fabric was applied to on-demand oil/water separation. Amazingly, the GO/PDA coated fabric exhibited dual superoleophobicity under an immiscible oil/oil system, which allowed it to separate oil/oil mixtures effectively. Due to the water affinity, layered texture, and absorption effect of the GO/PDA coating, the GO/PDA coated fabric can be served as a filtration module for removing dye from water efficiently. Moreover, the GO/PDA coating could also serve as a barrier to protect metal against corrosion. [Display omitted] •A Superlyophobic graphene oxide/polydopamine coating under liquid was developed.•Both oil/oil and oil/water separations are achieved by a single separation membrane.•The graphene oxide/polydopamine coating can remove dye from water efficiently.
ISSN:0008-6223
1873-3891
DOI:10.1016/j.carbon.2022.01.018