Structural and bio-catalytic aspects of nano crystallite iron(iii) complexes containing triazole-based ligands

Faculty Science Year: 2023
Type of Publication: ZU Hosted Pages: 3084-3103
Authors:
Journal: New Journal of Chemistry The Royal Society of Chemistry and the Centre National de la Recherche Scientifique Volume: 6
Keywords : Structural , bio-catalytic aspects , nano crystallite iron(iii)    
Abstract:
Three triazole-based ligands and their iron(III) complexes have been synthesized and characterized by several physical and chemical techniques. Elemental and thermal analysis in addition to molar conductance measurements assigned the molecular formulas while spectroscopic (1H NMR, mass spectra, FTIR, UV-Vis and ESR) and magnetic investigations determined the bonding pattern and stereochemistry. The final and accurate structure of the present iron(III) complexes was confirmed using PXRD data combined with computational chemistry calculations. The distorted octahedral stereochemistry of the present iron(III) chelate is revealed based on the results of the different characterization techniques used. Using the stopped-flow technique, the bio-catalytic potential of the current Fe(III) complexes as mimetics of the blue copper proteins, catechol oxidase and phenoxazinone synthase was studied. Kinetic study showed that the catalytic aerobic oxidation reactions of the phenols under study are of the biphasic type and take place in the saturation pathway. Michael–Menten approach was adopted to estimate the kinetic parameters Vmax, kcat, KM and kcat/KM. Cyclic voltammetry measurements were performed to determine the free energy (λ or ΔG°) of the ongoing oxidation reactions. The relationship between catalytic activity of triazole-based Fe(III) complexes with their structural properties and driving force (λ) is discussed. Possible mechanistic pathways for the catalytic oxidation reactions of the studied phenols are addressed.
   
     
 
       

Author Related Publications

  • Ahmed Mohamed Fathy Abedulrahman, "Palladium(II) based imines; synthesis, characterization, X-Ray structural analysis; DFT and catalytic hydrogenation study", ELSEVIER, 2021 More
  • Ahmed Mohamed Fathy Abedulrahman, "Synthesis and characterization of copper(II) complexes with tridentate pyridine – based ligands containing N3 donors. Catechol oxidase and phenoxazinone synthase biomimetic catalytic activity", المؤتمر الدولي الحادي عشر لعلوم البيئة بكلية العلوم, 2016 More
  • Ahmed Mohamed Fathy Abedulrahman, "Modulating the microstructure and catalytic activity of nano crystallites copper(II) complexes with tri nitrogen-donors ligand: Structural analysis, positron annihilation, and biomimetic catechol oxidase studies", Elsevier B.V, 2025 More
  • Ahmed Mohamed Fathy Abedulrahman, "A comparative study of novel ruthenium(III) and iron(III) complexes containing uracil; docking and biological studies", Elsevier Inc., 2023 More
  • Ahmed Mohamed Fathy Abedulrahman, "Copper (II) complexes based on the mixed ligand system: Study of synthesis, characterization, and stopped-flow kinetics of copper oxidase-mimicking catalytic activity", John Wiley & Sons, 2024 More

Department Related Publications

  • Salah Mohammed AbdelHalim Metwally, "Inhibition effects of some organic compoundstowards the steel electrode in citric acid solution in the presenext of chloride ions", Springer, 2017 More
  • Salah Mohammed AbdelHalim Metwally, "Factors affecting the corrosion behviour of aluminium in acid solutions I. Nitrogen and /or sulfur containing organic comppounds as corrosion inhibitors for Al in HCl solutions", springer, 2013 More
  • Mohammed Saeed Ahmed Mohammed Attar, "Synthesis, Characterization and Antibacterial Activity of Some New Transition Metal Complexes with Ciprofloxacin-Imine", Bull. Chem. Soc. Ethiop., 2015 More
  • Ayman AboulFotouh Gouda Sallem, "Design and utilisation of a novel poly imino-phosphorane composite for the effective removal of Pb2+ and Cr3+ ions from contaminated water sources", Taylor & Francis, 2024 More
  • Fathi Ahmed Abdul Latif Yassin, "Synthesis and Characterization of some Disperse Dyes based on Enaminones Synthesis and Characterization of some Disperse Dyes based on Enaminones", Springer, 2020 More
Tweet