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Polymer/organosilica nanocomposites based on polyimide with benzimidazole linkages and reactive organoclay containing isoleucine amino acid: Synthesis, characterization and morphology properties
Biomodification of cloisite Na + with L-methionine amino acid and preparation of poly(vinyl alcohol)/organoclay nanocomposite films
Preparation and Characterization of Thermal-Responsive Poly(propylene) Nonwoven
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
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
In situ fabrication of high performance polyimide/tyrosinemodified layered silicate nanocomposites
Molten Salt as a Green Reaction Medium: Synthesis of Polyureas Containing 4-phenylurazole Moiety in the Main Chain in the Presence of Tetrabutylammonium bromide as an Ionic Liquid
A novel and Efficient Synthesis of 4-Substituted-1,2,4-triazolidine-3,5-diones from Anilines
Ionic liquids as novel, green media for clean synthesis of soluble aromatic-aliphatic poly(amide-ester)s containing hydroxynaphthalene urazole moiety
A Selective Solid-Phase Extraction and Preconcentration Method with Using Molecularly Imprinted Polymer for Determination of Piroxicam in Pharmaceutical Samples
Efficient and Rapid Synthesis of Novel Optically Active Polyamides in the Presence of Tetrabutylammonium Bromide as Ionic Liquid under Microwave Irradiation
A Novel and Green Method for Polycondensation Reaction of 4-Phenylurazole with Different Diisocyanates under Solvent-Free Conditions
Microwave-Accelerated Preparation of Aromatic Polyamides Containing Phthalimide and S-Valine Pendent Groups in Ionic Liquids
23. Preparation of new optically active polyamides containing L-phenylalanine, phthalimide side chain via diisocyanate route by microwave energy: Comparison with conventional heating
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