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Curriculum Vitac
Research and publications in Progress
Synthesis and properties of biodegradable poly(vinyl alcohol)/organo-nanoclay nanocomposites
Novel optically active poly(amide-thioester-imide)s containing L-α-amino acids and thiadiazol anti-corrosion group: Production and characterization
Effect of silane-modified ZnO on morphology and properties of bionanocomposites based on poly(esteramide)containing tyrosine linkage
Preparation and structural characterization of novel bionanocomposite poly(ester-imide)s containing TiO2 nanoparticles S-valin and L-tyrosine amino acids moieties.
Preparation and characterization of optically active poly (amide-imide)/TiO2 bionanocomposites containing Ntrimellitylimido-L- isoleucine linkages: Using ionic liquid and ultrasonic irradiation
Synthesis and Properties of Biodegradable Poly(vinyl alcohol)/Organo-nanoclay Bionanocomposites
The First Report on the Catalytic Oxidation of Urazoles to Their Corresponding Triazolinediones via in situ Catalytic Generation of Br+ Using Periodic acid or Oxone®/KBr system
Ionic liquids as novel, green media for clean synthesis of soluble aromatic-aliphatic poly(amide-ester)s containing hydroxynaphthalene urazole moiety
10. A study of ,-diacrylate poly(dimethylsiloxane) containing vinyl ester of versatic acid/vinyl acetate emulsion copolymerization
Microwave heating in combination with ionic liquids: synthesis and properties of novel optically active polyamides, thermal degradation and electrochemical stability on multi-walled carbon nanotubes electrode
A simple and environmentally friendly method for surface modification of ZrO2 nanoparticles by biosafe citric acid as well as ascorbic acid (vitamin C) and its application for the preparation of poly(vinyl chloride) nanocomposite films
Production and characterization of novel nanocomposites based on poly(amide-imide) containing N-trimellitylimido-l-alanine diacid and 4,4′-diaminodiphenylmethan segments reinforced with grafted nano-ZnO by citric acid as a biological ligan
The surface modification of CuO nanoparticles with a flame retardant coupling agent and their influence on the thermal stability of poly(amide-imide)/CuO nanocomposites
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