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Durable graphene-based alkyd nanocomposites for surface coating applications.

Mohamed S Selim1, Abdelaziz N El-Hoshoudy2, ElSayed G Zaki2

  • 1Egyptian Petroleum Research Institute (EPRI), Nasr City, Cairo, 11727, Egypt. moh.selim_chem2006@yahoo.com.

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Summary

This review explores graphene-based alkyd nanocomposites for sustainable, eco-friendly coatings. These materials offer enhanced thermal stability, hydrophobicity, and corrosion resistance for protective applications.

Keywords:
Alkyd/graphene nanocompositesAnti-corrosion propertiesProtective coatingsSurface durabilitySustainabilityVegetable oils

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Corrosion Science

Background:

  • Long-term sustainability is a key scientific goal.
  • Vegetable oils offer accessible, cost-effective, and non-depletable resources for material development.
  • Alkyd resins derived from vegetable oils are used in polymeric surface coatings.

Purpose of the Study:

  • To review graphene-based alkyd nanocomposites for protective coating applications.
  • To highlight the eco-friendly and sustainable aspects of these advanced materials.
  • To introduce novel designs for enhanced coating performance.

Main Methods:

  • Review of existing literature on graphene-alkyd nanocomposites.
  • Analysis of properties such as hydrophobicity, corrosion resistance, and durability.
  • Discussion of industrial and research interests in these materials.

Main Results:

  • Graphene-alkyd nanocomposites exhibit excellent thermal stability and protective qualities.
  • These coatings demonstrate high hydrophobicity, superior corrosion resistance, and enhanced durability.
  • The combination of graphene with alkyd matrices yields materials with exceptional thermal and chemical properties.

Conclusions:

  • Graphene-based alkyd nanocoatings represent an advanced approach to developing protective coatings.
  • Synergistic effects from hybrid nanofillers can significantly improve anti-corrosion properties and coating longevity.
  • These nanocomposites hold significant promise for various industrial and research applications requiring durable and protective surfaces.