<p>Pyrimidine derivatives can be efficiently synthesized using rare-earth element (La<sup>3+</sup>) doped Spinel ferrite nanoparticles as a catalyst, which exhibits magnetic properties that facilitate easy separation and reusability. Various studies highlighted the effectiveness of different ferrite-based catalysts. This paper investigates the catalytic activity of prepared Spinel ferrite nanoparticles as a novel nano-catalyst in synthesizing pyrimidine derivative compounds. Incorporating rare-earth element La<sup>3+</sup> ions into the spinel ferrite matrix enhances the catalytic performance by promoting structural and magnetic properties favorable for the condensation reactions involved in the synthesis process. We explore the synthesis, characterization, and catalytic evaluations of La³⁺ doped Ni–Co–Zn Spinel ferrite nanoparticles.</p>

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Eco-Friendly Synthesis of Pyrimidine Derivatives Using a Magnetically Recoverable and Reusable Catalyst

  • Ketankumar Ganure,
  • Seema Tiwari,
  • Sonali Bhosle,
  • Navanath Kamble,
  • Archana Singh

摘要

Pyrimidine derivatives can be efficiently synthesized using rare-earth element (La3+) doped Spinel ferrite nanoparticles as a catalyst, which exhibits magnetic properties that facilitate easy separation and reusability. Various studies highlighted the effectiveness of different ferrite-based catalysts. This paper investigates the catalytic activity of prepared Spinel ferrite nanoparticles as a novel nano-catalyst in synthesizing pyrimidine derivative compounds. Incorporating rare-earth element La3+ ions into the spinel ferrite matrix enhances the catalytic performance by promoting structural and magnetic properties favorable for the condensation reactions involved in the synthesis process. We explore the synthesis, characterization, and catalytic evaluations of La³⁺ doped Ni–Co–Zn Spinel ferrite nanoparticles.