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May 12, 2026Scientific Reports2 citationsOpen Access

Investigating the potential of graphene to enhance concrete performance

MKMohammed Firdous Mohammed KalifBMBahiru Bewket MitikieSDSofonias Alemayehu Desta

Key Points

  • This research aims to assess the impact of graphene as a functional additive on the mechanical behavior of concrete and optimize its mix design.
  • Graphene powder was added to concrete mixtures at 0.1% to 0.5% by cement mass.
  • Laboratory tests included compressive strength, flexural strength, and permeability measurements according to ASTM standards.
  • Microstructural characterization was conducted using X-ray diffraction and Fourier Transform Infrared Spectroscopy.
  • At 0.4% graphene dosage, compressive strength improved to 25.16 N/mm² at 7 days and 37.75 N/mm² at 28 days.
  • Flexural strengths at the same dosages were 2.985 N/mm² and 4.47 N/mm² respectively.
  • Water absorption tests indicated reduced permeability, enhancing durability and resistance to fluid ingress.

Abstract

This research evaluated graphene as a functional additive to improve the performance of cementitious composites. It aimed to assess the effect of graphene powder on concrete’s mechanical behavior and optimize the mix design. Graphene powder was incorporated into concrete mixtures at dosages ranging from 0.1% to 0.5% by mass of cement. A series of standardized laboratory tests was performed, including compressive strength and flexural measurements in accordance with ASTM C39 and C78 accordingly. Microstructural and chemical characterization of both the graphene and the graphene-modified concrete was conducted using X-ray diffraction (XRD) and Fourier Transform Infrared Spectroscopy (FTIR). Water absorption tests were performed to assess permeability-related properties, and Scanning Electron Microscopy (SEM) was employed to investigate the distribution and dispersion of graphene within the cementitious matrix. At the optimal graphene dosage with 0.4% by cement weight, the compressive strength reached 25.16 N/mm² at 7 days and 37.75 N/mm² at 28 days, while the corresponding flexural strengths were 2.985 N/mm² and 4.47 N/mm², respectively. XRD analysis confirmed the successful incorporation of graphene, as indicated by a characteristic diffraction peak at approximately 26.5°. Water absorption results showed a reduction in permeability, implying improved resistance to fluid ingress and enhanced durability. It shows that graphene can reduce cement, supporting more sustainable construction.

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Cite This Study

Kalif et al. (2026) studied this question.

synapsesocial.com/papers/6a02c380ce8c8c81e9640c95https://doi.org/10.1038/s41598-026-52461-3
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