4.6 Article

Research Status of Graphene Polyurethane Composite Coating

Journal

COATINGS
Volume 12, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/coatings12020264

Keywords

graphene oxide; polyurethane; composite coating; corrosion protection

Funding

  1. research on performance test and quality evaluation technology of high pressure and large capacity hydrogen storage bottle [2020YFB1506105]
  2. talent introduction project of Beijing University of Chemical Technology [BUCT-0328-12060095084]

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This paper investigates the preparation and properties of graphene polyurethane composite coatings, analyzes the mechanism of graphene in the new coatings, and expands the research and development of new anticorrotic coatings.
Graphene material has a variety of excellent properties and applications in energy storage, biomaterials, photoelectric devices, and other fields. With the progress of nanotechnology, graphene nanomaterials have shown their advantages in the field of new nano-corrosion coatings with their high barrier structure. In addition, polyurethane is also widely used in the field of anti-corrosion coatings due to its excellent chemical resistance, mechanical properties, and weathering resistance. The preparation of composite coatings by combining graphene nanomaterials with traditional polyurethane (PU) coatings has opened up a new way for the research and development of new anticorrotic coatings. In this paper, graphene polyurethane composite coating was first used as the research object, and the mechanism of graphene material in the new composite coating was analyzed. Then, graphene oxide (GO), a commonly used precursor material, was used as an entry point for a detailed study of the properties of GO materials and the advantages and disadvantages of its application in composites, and two types of modifications, covalent and non-covalent, were analyzed. In addition, the preparation methods and processes of graphene polyurethane composite coatings were summarized. Finally, the future research directions and research focus of GO were prospected.

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