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Surface Functionalized TiO2 Nanoparticle Designed for the Preparation of Chiral Poly(amide-imide) Bionanocomposites Containing Phenylalanine Linkage
Surface Functionalized TiO2 Nanoparticle Designed for the Preparation of Chiral Poly(amide-imide) Bionanocomposites Containing Phenylalanine Linkage
chiral poly(amide-thioesterimide) s having thiadiazol group: microwave-assisted synthesis and study of thermo-optical behavior
The effect of carboxylated multi-walled carbon nanotubes on reinforcement efficiency of thiazolebearing poly(amide-imide) composites
Application of chiral diacid N-trimellitylimido-L-valine for the surface modification of copper oxide as inorganic filler and preparation of poly(amide–imide)/cupric oxide nanocomposites
Application of chiral diacid N-trimellitylimido-L-valine for the surface modification of copper oxide as inorganic filler and preparation of poly(amide–imide)/cupric oxide nanocomposites
...Applications of ultrasound for modification of zinc oxide and fabrication of optically active poly(amideimide)/ zinc oxide bionanocomposites
Semiaromatic nanostructured poly(amide-ester-imide)s containing biologically active L-amino acids and diol: construction, characterization, and morphology study
Tailored functionalization of ZnO nanoparticle via reactive cyclodextrin and its bionanocomposite synthesis
Amino acid-functionalized multi-walled carbon nanotubes for improving compatibility with chiral poly(amide-ester-imide) containing l-phenylalanine and l-tyrosine linkages
A facile, efficient, and rapid covalent functionalization of multi-walled carbon nanotubes with natural amino acids under microwave irradiation
Bionanocomposite materials from layered double hydroxide/N-trimellitylimido-l-isoleucine hybrid and poly(vinyl alcohol)
Functionalized multi-wall carbon nanotube reinforced poly(ester-imide) bionanocomposites containing L-leucine amino acid units
Novel Bioactive Chiral Poly(amide–imide)s Containing Different Amino Acids Linkages: Studies on Synthesis, Characterization and Biodegradability
Molten salt-supported polycondensation of optically active diacid monomers with an aromatic thiazole bearing diamine using microwave irradiation
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