صفحه نمایش استاد - پرتال اصلی دانشگاه رازی

Maryam Safaei

Maryam Safaei

Assistant Professor / Department of Chemistry / Organic chemistry

Master Theses

  1. Mechanistic insights into the azide-alkyne cycloaddition leading to triazole-fused piperazine compounds
    Shaghayegh Farhadi khoshinani 2026
       in this study, the mechanism of a transition-metal-free cascade cyclization of N-aryl-N-(oxetan-3-yl)propiolamides with sodium azide was investigated using density functional theory (DFT) calculations. The reaction leads to the formation of hydroxymethyl-substituted triazole-fused piperazin-2-ones through a sequential process involving azide–alkyne cycloaddition followed by oxetane ring opening. The calculated reaction pathway indicates that the cascade is initiated by the formation of the azide–alkyne bond, whereas oxetane ring opening does not occur at the initial stage. The initially generated open-chain triazolide subsequently undergoes intramolecular cyclization to form a more stable triazolide intermediate. This intermediate then promotes the opening of the pendant oxetane ring through an intramolecular nucleophilic process, followed by proton transfer to produce the final neutral product. Alternative pathways involving initial oxetane ring opening were found to be energetically unfavorable. The calculations also provide insight into the reduced reactivity of the corresponding terminal-alkyne substrate. Rather than arising from an intrinsically high reaction barrier, its low reactivity is associated with the formation of a stable non-covalent complex involving the acidic terminal alkyne C–H bond and the NaN?/NaHCO? ion pair. Formation of this complex reduces the availability of the substrate for productive azide–alkyne bond formation. Overall, the computational results clarify the sequence of elementary steps involved in the cascade cyclization and provide a mechanistic explanation for the observed substrate-dependent reactivity, emphasizing the contribution of ion-pair interactions to the reaction pathway.
  2. Synthesis, characterization and application of bimetallic metal-organic frameworks of iron and zinc supported by copper iodide as a heterogeneous catalyst for catalytic hantzch reaction and oxidative desulfurization of dibenzothiophene
    Maryam Salar Abadi 2026
    The bimetallic iron-zinc metal-organic framework (MOF) was synthesized using iron(III) nitrate nonahydrate (Fe(NO3)3·9H2O), zinc nitrate hexahydrate (Zn(NO3)2·6H2O), and terephthalic acid as the organic linker. Following the synthesis of the Fe-Zn MOF, CuI nanoparticles were successfully immobilized onto the framework, resulting in the formation of CuI@Fe-Zn nanoparticles. To elucidate the structural and compositional characteristics of the synthesize CuI@Fe-Zn nanoparticles, a comprehensive characterization was performed employing a variety of analytical techniques, including FTIR, XRD, EDX, FESEM, TGA and BET. This multifaceted characterization approach provides valuable insights into the structural integrity, morphology, and potential applications of the CuI@Fe-Zn nanoparticles in various fields of research.
  3. Synthesis, characterization and application of bimetallic metal-organic framework of iron and zinc supported by nickel nanoparticles as a heterogeneous catalyst for catalytic reduction of nitroarenes and oxidation of benzyl alcohols by hydrogen peroxide
    Nesa Karimi 2026
  4. Synthesis, Characterization, and Applications of Bis (2-Hydroxyethyl)ammonium Trifluoroacetate as an Efficient Catalyst in the Preparation of Benzodiazepine Heterocyclic Derivatives and 2-Benzylidene Malononitrile Derivetives
    2026

Update: 2026-10-08

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