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Synthesis and Characterization of Novel Silver/L-Phenylalanine-Based Optically Active Polyacrylate Nanocomposite
Effect of silane-modified ZnO on morphology and properties of bionanocomposites based on poly(esteramide)containing tyrosine linkage
Polymer/organosilica nanocomposites based on polyimide with benzimidazole linkages and reactive organoclay containing isoleucine amino acid: Synthesis, characterization and morphology properties
The first report on the atom transfer radical polymerization of an optically active acidic monomer based on L-phenylalanine.
Morphology properties of nanostructure poly(Amide-Imide)s based on N-Trimellitylimido-S-amino acids and 5-(2- benzimidazole)-1,3-phenylenediamine under green conditions
Novel nanostructure amino acid-based poly(amide-imide)s enclosing benzimidazole pendant group in green medium: fabrication and characterization
Preparation of sulfonated poly(ethylene terephthalate) nanofibrous membranes for removal of basic dyes
Fabrication of Novel Chiral Poly(ester-amide)s based on Tyrosine Natural Amino Acid.
In press. Novel nanostructure amino acid-based poly(amide-imide)s enclosing benzimidazole pendant group in green medium: fabrication and characterization.
Investigation on synthesis and morphology characteristic of novel chiral poly(amide-imide)/TiO2 nanocomposites derived from L-isoleucine-based diacid and 4,4'-methylenebis(3-chloro-2,6-diethylaniline)
The nanocomposites of zinc oxide/ L -amino acid-based chiral poly(ester-imide) via an ultrasonic route: Synthesis, characterization, and thermal properties
Tailored Synthesis of Nanostructured Polymer Thin Films from Optically Active and Thermally Stable Poly(amide-coimide) s Containing Hydroxyl Pendant Groups in a Green Ionic Solvent
Green Methodology with Ionic Liquids as a Media for Efficient Synthesis of Polyamides Derived from 4-(4-Dimethylaminophenyl)-1,2,4-triazolidine-3,5-dione and Diacid Chlorides
Reaction of Aromatic Carboxylic Acids with Isocyanates Using Ionic Liquids as Novel and Efficient Media
Application of Factorial Design Method for the Optimization of Reaction Conditions Influencing Viscosity of Poly(amide-imide-ether-urethane)s Based PEG and L-leucine
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