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Electrochemical oxidation of 4-substituted urazoles in the presence of arylsulfinic acids: An efficient method for the synthesis of new sulfonamide derivatives
Progress in Synthetic Polymer Based on Natural Amino acids
Microwave Step-Growth Polymerization of 5-(4-methyl-2-phthalimidylpentanoylamino)-isophthalic acid with Different Diisocyanates.
...Direct Polycondensation of N-trimellitylimido-L-isoleucine diacid with aromatic Diols
Use of silane coupling agent for surface modification of zinc oxide as inorganic filler and preparation of poly(amide-imide)/zinc oxide nanocomposite containing phenylalanine moieties
Construction, Characterization and Biological Activity of Chiral and Thermally Stable Nanostructured Poly(Ester-Imide)s as Tyrosine-Containing Pseudo-Poly(Amino Acid)
Straightforward and green method for the synthesis of nanostructure poly(amide-imide)s-containing benzimidazole and amino acid moieties by microwave irradiation
Polymer Nanocomposites Containing 4, 4′-Methylene Bis (3-Chloro-2, 6-Diethylaniline) and N, N′-(Pyromellitoyl)-Bis-L-Phenylalanine Diacid Reinforced with Modified ZnO and Organo-Montmorillonite
Microwave-Assisted Construction of Nanostructured Poly(amide-imide)s Containing Environmentally Friendly Natural Amino Acids via Implementation of Molten Salt Ionic Liquid as an Activating Media
Synthesis of Novel Monomers Via Benzyne and Bisbenzyne Intermediates
A Rapid and Convenient Synthesis of Oximes in Dry Media under Microwave Irradiation
Application of molecularly imprinted polymer for solid phase extraction and preconcentration of Hydrochlorothiazide in pharmaceutical and serum sample analysis
Fabrication of polyimide/titania nanocomposites containing benzimidazole side groups via sol-gel process.
Fabrication and in vitro degradation study of novel optically Active polymers derived from amino acid containing diacids and 4,4΄-thiobis(2-tert-butyl-5-methylphenol).
Dispersion of chiral amino acid organomodified Cloisite Na+ in poly(vinyl alcohol) matrix for designing of novel bionanocomposite films.