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Robust Superhydrophobic/Superoleophilic Wrinkled Microspherical MOF@rGO Composites for Efficient Oil–Water Separation

Jiahui GuBeijing Key Laboratory of Membrane Science and Technology Beijing University of Chemical Technology Beijing 100029 P. R. ChinaHongwei FanBeijing Key Laboratory of Membrane Science and Technology Beijing University of Chemical Technology Beijing 100029 P. R. ChinaChunxi LiBeijing Key Laboratory of Membrane Science and Technology Beijing University of Chemical Technology Beijing 100029 P. R. ChinaJürgen CaroInstitute of Physical Chemistry and Electrochemistry Leibniz Universität Hannover Callinstrasse 3A 30167 Hannover GermanyHong MengBeijing Key Laboratory of Membrane Science and Technology Beijing University of Chemical Technology Beijing 100029 P. R. China
2019en
ABI

Аннотация

Abstract Graphene/MOF‐based composite materials in three‐dimensional (3D) architectures are promising for the treatment of oil‐containing wastewater by absorption owing to their intrinsic properties of graphene and metal‐organic frameworks (MOFs), such as high porosity, ultralow density, and facilely tailored superwettability. In this study, novel wrinkled 3D microspherical MOF@rGO composites with both superhydrophobic and superoleophilic properties were developed by embedding MOF nanoparticles between graphene oxide (GO) nanosheets, followed by high‐temperature reduction self‐assembly. The microspherical composites feature a unique micro/nano hierarchy consisting of crumpled reduced GO (rGO) nanosheets intercalated with well‐dispersed MOF nanoparticles. Combined with the superwettability and abundant meso/microporosity, the peculiar architectures of wrinkled ZIF‐8@rGO microspheres show very fast absorption rates and high sorption selectivity for organic solvents and oils from water.

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