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Preparation and characterization of new organoclays using Natural Amino Acids and Cloisite Na+.
Synthesis, characterization, and properties of co-poly (ether-urethane-urea) s containing lariat cryptand 22: Li + harvesting polymers
Comparative study of using ionic liquid and organic solvent for the preparation of optically active organosoluble polyamides with pendent 4-(2-phthalimidiyl-propanoylamino)benzamide groups
Highly Sensitive Voltammetric Sensor Based on Catechol-Derivative-Multiwall Carbon Nanotubes for the Determination of Captopril in Urine Samples
A Review. High Performance Polymers in Ionic Liquid: An Opportunity for Green Polymer Chemistry. Part II: Polyimides and Polyesters.
Synthesis of soluble poly (amide-ether-imide-urea)s bearing amino acid moieties in the main chain under green media (ionic liquid)
New developments in polymer science and technology using combination of ionic liquids and microwave irradiation
Advances in synthetic optically active condensation polymers-A review.
Synthesis, characterization and properties of co-poly(ether-urethane-urea)s containing lariat cryptand 22: Li+ harvesting plymers
Synthesis and characterization of novel dopamine-derivative: application of modified multi-wall carbon nanotubes paste electrode for electrochemical investigation
Pseudo-poly(amino acid)s: study on construction and characterization of novel chiral and thermally stable poly(ester-imide)s containing different trimellitylimido-amino acids based diacids and pyromellitoyl-tyrosine based diol
Synthesis of Biodegradable Chiral Poly(ester-imide)s Derived from Valine- , Leucine- and Tyrosine-Containing monomers
A facile, efficient, and green fabrication of nanocomposites based on l-leucine containing poly(amide-imide) and PVA-modified Ag nanoparticles by ultrasonic irradiation
The effect of the coupling agents KH550 and KH570 on the nanostructure and interfacial interaction of zinc oxide/chiral poly(amide–imide) nanocomposites containing l-leucine amino acid moieties
An Effective and Environmentally Friendly Method for Surface Modification of Amorphous Silica Nanoparticles by Biodegradable Diacids Derived from Different Amino Acids
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