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MWCNTs/Ionic Liquid/Graphene Quantum Dots Nanocomposite Coated with Nickel-Cobalt Bimetallic Catalyst as a Highly Selective Non-enzymatic Sensor for Determination of Glucose
Dicationic ionic liquids/heteropoly acid composites as heterogeneous catalysts for cyclohexene oxidation with molecular oxygen under solventfree condition Insights from theory and experiments
Dicationic ionic liquids/heteropoly acid composites as heterogeneous catalysts for cyclohexene oxidation with molecular oxygen under solventfree condition Insights from theory and experiments
Pd/Cu-free Heck and Sonogashira reactions using cobalt immobilized on in situ magnetic cross-linked chitosan fibers: A highly efficient and reusable catalyst
Immobilization of dioxomolybdenum(VI) complex bearing salicylidene 2-picoloyl hydrazone on chloropropyl functionalized SBA-15: A highly active, selective and reusable catalyst in olefin epoxidation
Studies on calcined cow bone and pyrolyzed wood suitable supports for immobilizing hybrid nano particles of Co-Mn as new catalysts for oxidation of 2 6-diisopropyl naphthalene
Preparation of Ni catalysts on Al-HMS nanostructure support via supercritical deposition in supercritical carbon dioxide-methanol solution with thermodynamic control of metal loading
CuPd bimetallic nanoparticles supported magnetic ionic liquid-derived N-doped carbon as a highly efficient heterogeneous catalyst for the one-pot oxidative multicomponent reactions
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Modification of clay with L-leucine and TiO2 with silane coupling agent for preparation of poly(vinyl alcohol)/organo-nanoclay/modified TiO2 nanocomposites film
Conferences
2008 M.Sc. Graduated Jannati, Mohammad H.
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity