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An efficient microwave-assisted synthesis of optically active polyamides in the presence of ionic liquid and conventional solvent: A comparative study
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
Preparation and characterization of novel optically active poly(vinyl alcohol-co-vinyl ester) in nonaqueous medium using L-phenylalanine as a chiral material
Nanostructure formation in chiral poly(amide-imide)s based on dopamine moiety and N-trimellitylimido-L-amino acids in the main chain
Use of ionic liquid and microwave irradiation as a convenient, rapid and eco-friendly method for synthesis of novel optically active and highly organosoluble aromatic polyamides containing N-phthaloyl-L-alanine pendent group
Microwave-enhanced rapid synthesis of organosoluble polyamides based on 5-(3-acetoxynaphthoylamino)isophthalic acid
Safe and fast polyamidation of 5-[4-(2-phthalimidiyl-propanoylamino)benzoylamino]-isophthalic acid with aromatic diamines in ionic liquid under microwave irradiation
Polymerization of 4,4'-(Hexafluoroisopropylidene) N,N'-bis(phthaloyl-L-leucine) diacid chloride with Aromatic Diamines by Microwave-assisted
Synthesis and Characterization of Novel Optically Active and Flame-Retardant Heterocyclic Polyimides.
Preparation and characterization of thermostable chiral extended polyamides bearing N-phthaloyl-L-leucine pendent architectures in green media
Synthesis and Characterization of Novel Optically Active and Flame-Retardant Heterocyclic Polyimides
Microwave Assisted Polycondensation of 4,4'-(Hexafluoroisopro-pylidene) N,N'-bis(phthaloyl-L-leucine) diacid chloride with Aromatic Diols.
Microwave-assisted polycondensation of 4,4′-(hexafluoroisopropylidene)-N,N′-bis(phthaloyl-L-leucine) diacid chloride with aromatic diols
Synthesis of Novel Optically Active Poly(Amide-Imide)s with Benzophenone and L-Alanine Moieties.
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