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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).
Simple and efficient microwave-assisted polycondensation for preparation of chiral poly(amideimide)s having pendant phenol moiety.
Thermally Stable and Optically Active Poly(amide-imide)s Derived from 4,4'–(hexafluoroisopropylidene)-N,N'-bis-(phthaloyl-L-methionine) Diacid Chloride and Various Aromatic Diamines: Synthesis and Characterization.
Soluble Novel Optically Active Poly(Amide-Imide)s Derived from N,N'-(4,4'-Oxydiphthaloyl)-bis-L-leucine Diacid Chloride and Various Aromatic Diamines: Synthesis and Characterization.
Advances in synthetic optically active condensation
An efficient microwave-assisted synthesis of optically active polyamides in the presence of ionic liquid and conventional solvent: A comparative study
Poly(amide-imide)s obtained from 3,5-diamino-N-(thiazol-2-yl)-benzamide and dicarboxylic acids containing various amino acid units Production, characterization and morphological investigation
Microwave Irradiation for Accelerating Synthesis of New Chiral Nanostructured Poly (Amide-Imide) s Having a Thiazole Pendant Group
Novel Bioactive Chiral Poly(amide–imide)s Containing Different Amino Acids Linkages: Studies on Synthesis, Characterization and Biodegradability
The production of functionalized multiwall carbon nanotube/amino acid-based poly(amid-imide) composites containing a pendant dopamine moiety
In vitro studies on biodegradable chiral nanostructure poly(amide-imide)s containing different natural amino acids in green medium
Benzyltriphenylphosphonium dichromate as a mild reagent for oxidation of thiols and sulfides
Benzyltriphenylphosphonium dichromate as a mild reagent for oxidation of thiols and sulfides
Surface Functionalized TiO2 Nanoparticle Designed for the Preparation of Chiral Poly(amide-imide) Bionanocomposites Containing Phenylalanine Linkage
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
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