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Mussel-Inspired Synthesis of Polydopamine-Functionalized Graphene Hydrogel as Reusable Adsorbents for Water Purification

ACS Applied Materials & Interfaces · 2012 · Vol. 5(2) · pp. 425–432
Hongcai GaoYimin SunJiajing ZhouRong XuHongwei Duan

Abstract

We present a one-step approach to polydopamine-modified graphene hydrogel, with dopamine serving as both reductant and surface functionalization agents. The synthetic method is based on the spontaneous polymerization of dopamine and the self-assembly of graphene nanosheets into porous hydrogel structures. Benefiting from the abundant functional groups of polydopamine and the high specific surface areas of graphene hydrogel with three-dimensional interconnected pores, the prepared material exhibits high adsorption capacities toward a wide spectrum of contaminants, including heavy metals, synthetic dyes, and aromatic pollutants. Importantly, the free-standing graphene hydrogel can be easily removed from water after adsorption process, and can be regenerated by altering the pH values of the solution for adsorbed heavy metals or using low-cost alcohols for synthetic dyes and aromatic molecules.

Graphene and Nanomaterials ApplicationsNanomaterials for catalytic reactionsCarbon and Quantum Dots ApplicationsGrapheneMaterials scienceAdsorptionSurface modificationPolymerizationChemical engineeringSelf-healing hydrogelsPorosityMoleculeNanotechnology

MeSH terms

AdsorptionAnimalsGraphiteIndolesPolymersWater Pollutants, ChemicalWater PurificationMetals, HeavyHydrogel, Polyethylene Glycol DimethacrylateBivalviaRecycling
Citations
687
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References
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Removal of methylene blue from aqueous solution by graphene oxide
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Journal of Colloid and Interface Science · 2011 · 1,106 citations
Dye Adsorption on Layered Graphite Oxide
Journal of Chemical & Engineering Data · 2010 · 378 citations
Adsorption Behavior of EDTA-Graphene Oxide for Pb (II) Removal
ACS Applied Materials & Interfaces · 2012 · 831 citations
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