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Updated: Sep 23, 2025

Fabrication of Superhydrophobic Metal Surfaces for Anti-Icing Applications
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Graphene-based surface heater for de-icing applications.

Nazmul Karim1, Minglonghai Zhang2, Shaila Afroj1,3

  • 1National Graphene Institute (NGI), The University of Manchester Booth Street East M13 9PL Manchester UK mdnazmul.karim@manchester.ac.uk.

RSC Advances
|May 11, 2022
PubMed
Summary
This summary is machine-generated.

Researchers developed scalable graphene-based glass fiber rovings for efficient de-icing composites. This innovation offers a lightweight, low-resistance solution to overcome limitations of current de-icing technologies.

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Composite Materials

Background:

  • Graphene's exceptional properties make it ideal for advanced composites.
  • Existing de-icing technologies face challenges including high cost, power consumption, and limited lifespan.

Purpose of the Study:

  • To develop a scalable method for producing highly conductive graphene-based glass fiber rovings for de-icing applications.
  • To create a cost-effective and efficient de-icing composite material.

Main Methods:

  • Utilized microfluidic exfoliation for scalable graphene-based conductive ink production.
  • Employed a dip-dry-cure technique to coat glass fiber rovings with graphene ink.
  • Integrated coated rovings into vacuum-infused epoxy-glass fabric composites.

Main Results:

  • Achieved low electrical resistance (∼1.7 Ω cm⁻¹) in graphene-coated glass rovings.
  • Demonstrated rapid heating capabilities of the coated rovings.
  • Successfully fabricated graphene-based composites for de-icing applications.

Conclusions:

  • The developed process is scalable for industrial manufacturing of graphene-based de-icing composites.
  • Graphene-coated glass rovings offer a promising solution for lightweight and efficient de-icing.
  • The new composites address limitations of current de-icing technologies.