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Novel Optically Active Poly(amide-imide)s Based on N-Trimellitylimido-L-methionine and Different Diisocyanates Synthesis and Characterization
Synthesis of High-Molecular-Weight Optically Active Poly(ester-imide)s by Direct Polycondensation with Tosyl Chloride
Synthesis and Characterization of Novel Poly(Urea-Urethane)s Containing p-Methoxyphenylurazole Hexamethylene Diisocyanate and Aromatic diols Moieties
One-Shot Synthesis of Poly(amide-ether-imide-urethane) Containing L-leucine Moiety under Microwave Irradiation
Synthesis of Novel Optically Active Poly(ester -imide)s by Direct Polycondensation Reaction Promoted by Tosyl Chloride in Pyridine in the presence of N N-Dimethyformamide
Synthesis of 4-(4-Hydroxyphenyl)-1 2 4-tiazolidine-3 5-dione as a Trifunctional monomer
Synthesis and Properties of Optically Active Copoly(ester- imide) by the Direct Polycondensation with Tosyl Chloride and N N-Dimethylformamide in Pyridine
Synthesis and Characterization of New Optically Active Poly(amide-imide)s Containing Epiclon Moieties in the Main Chain
Preparation and Properties of Novel Optically Active Poly(Amide-Imide)s Containing Bis-(P Aminophenoxy)Dimethylsilane Pyromellitic Dianhydride and Amino Acids Moieties
Polycondensation Reaction of N N -(4 4 -Oxydiphthaloyl)-bis-L-methionine Diacid Chloride with Aromatic Diamines Synthesis and Properties
Fluorine Containing 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 Char
Synthesis of Optically Active Copoly(amide-ester- imide)s Derived from N N -(4 4 -oxydiphthaloyl)-bis-L-phenylalanine diacid 4 4 -diaminodiphenylether and bisphenol A by Direct Polycondensation
Facile and Rapid Synthesis of Optically Active Polymers Derived from N N -(4 4 -Oxydiphthaloyl)-bis-L-leucine Diacid with Different Diols by Direct Polycondensation Method
Investigation of Pigment Distribution in Masterbatches by Implementation of Three Rheological Models
Investigation of Pigment Distribution in Masterbatches by Implementation of Three Rheological Models