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Mesoporous Ca-alginate/melamine-rich covalent organic polymer/cupric oxide-based microgel beads as heterogeneous catalyst for efficient catalytic reduction of hazardous water pollutants
Mesoporous Ca-alginate/melamine-rich covalent organic polymer/cupric oxide-based microgel beads as heterogeneous catalyst for efficient catalytic reduction of hazardous water pollutants
Facile synthesis of Co(OH)2 magnetic nanoflake deposited on reduced graphene oxide nanoflake as an efficient bi-functional electrocatalyst for oxygen evolution/reduction reactions in alkaline media
Facile synthesis of Co(OH)2 magnetic nanoflake deposited on reduced graphene oxide nanoflake as an efficient bi-functional electrocatalyst for oxygen evolution/reduction reactions in alkaline media
Palladium nanoparticles supported on core-shell and yolk-shell Fe3O4@nitrogen doped carbon cubes as a highly efficient, magnetically separable catalyst for the reduction of nitroarenes and the oxidation of alcohols
A novel core@double shell magnetic nitrogen-doped carbon nanotubes as a support for palladium nanoparticles: A highly efficient magnetic catalyst in the direct reductive coupling of nitroarenes and alcohols
Synthesis spectral and electrochemical studies of Cu(II) and Ni(II) complexes with new N2O2 ligands A new precursor capable of depositing copper nanoparticles using thermal reduction
The fabrication and characterization of Cu-nanoparticle immobilization on a hybrid chitosan derivative-carbon support as a novel electrochemical sensor application for the sensitive enzymeless oxidation of glucose and reduction of hydrogen peroxide
The fabrication and characterization of Cu-nanoparticle immobilization on a hybrid chitosan derivative-carbon support as a novel electrochemical sensor application for the sensitive enzymeless oxidation of glucose and reduction of hydrogen peroxide
July 1996: Excellent performance in Research Project, Isfahan university of Technology (IUT), entitled: Copolymerizartion of Bistriazolinediones With trans-Stilbene (one paper was published). Financial support given by Research Council, IUT.
Separation and Purfication Technology
Research Experience
Supervised Ph.D. Students
Industrial Projects
Novel Bioactive Chiral Poly(amide–imide)s Containing Different Amino Acids Linkages: Studies on Synthesis, Characterization and Biodegradability