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February 2, 2026Scientific Reports0 citationsOpen Access

Modifying graphene oxide with magnetic nanoparticles and Mg-Al LDHs and its application as an efficient catalyst in organic reactions

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MRMohadeseh RezaeianMTMahdieh TajbakhshMNMohammad Reza Naimi-Jamal

Key Points

  • The study aims to enhance the catalytic properties of graphene oxide by modifying it with magnetic nanoparticles and Mg-Al LDHs.
  • Synthesize graphene oxide and modify with Fe3O4 magnetic nanoparticles.
  • Integrate Mg-Al-OH LDHs into the graphene oxide matrix using a solvothermal method.
  • Characterize the nanohybrid using SEM, EDX, X-ray mapping, and VSM analysis.
  • Examine the catalytic activity in synthesizing isoxazolone and thiophene compounds.
  • The average particle size of the nanoparticles ranged from 40 to 80 nm.
  • EDX and X-ray mapping confirmed the presence of carbon, iron, aluminum, and magnesium in the nanohybrid.
  • Despite a reduction in magnetic properties of Fe3O4, the nanohybrid retained its magnetic characteristics.
  • The modified graphene oxide showed improved catalytic efficiency in organic reactions.

Abstract

Graphene oxide was synthesized and modified with Fe3O4 magnetic nanoparticles, followed by integration of Mg-Al-OH LDHs into the GO matrix through solvothermal method. The formed magnetic Fe3O4@GO@Mg-Al-OH LDHs was then characterized using conventional analytical methods. SEM images showed agglomerated nanoparticles of the monohybrids with an average particle size between 40 and 80 nm. EDX and X-ray mapping confirmed the presence of all expected elements, including carbon, iron, aluminum, and magnesium. Furthermore, VSM analysis demonstrated that the magnetic properties of Fe3O4 was meaningfully dropped in the final nanohybrid, although Fe3O4@GO@Mg-Al-OH LDHs still showed magnetic properties. The role of this nanohybrid as a catalyst was finally examined in the synthesis of isoxazolone and thiophene compounds.

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Cite This Study

Rezaeian et al. (2026) studied this question.

synapsesocial.com/papers/6980ff26c1c9540dea811f7dhttps://doi.org/10.1038/s41598-026-35283-1
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