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Synthesis and Structural Characterization of Novel Nanostructured Aromatic Optically Active Poly(Ester Amide)s Derived from S-tyrosine Containing Symmetric Diol and Aromatic Diacid Chlorides
Bionanocomposites preparation and characterization Dispersion of surface-modified ZnO nanoparticles in optically active poly(amide-imide) derived from 3 5-diamino-N-(4-hydroxyphenyl)benzamide and amino acid
Dispersion of Surface Modified Nanostructure Zinc Oxide in Optically Active Poly(Amide-Imide) Containing Pyromellitoyl-bis-L-isoleucine Segments Nanocomposite Preparation and Morphological Investigation
Facile synthesis of nanocomposite materials by intercalating an optically active poly(amide-imide) enclosing (l)-isoleucine moieties and azobenzene side groups into a chiral layered double hydroxide
Facile synthesis of nanocomposite materials by intercalating an optically active poly(amide-imide) enclosing (l)-isoleucine moieties and azobenzene side groups into a chiral layered double hydroxide
Insertion of novel optically active poly(amide-imide) chains containing pyromellitoyl-bis-l-phenylalanine linkages into the nanolayered silicates modified with l-tyrosine through solution intercalation
Insertion of novel optically active poly(amide-imide) chains containing pyromellitoyl-bis-l-phenylalanine linkages into the nanolayered silicates modified with l-tyrosine through solution intercalation
. Facile synthesis of new optically active poly (amide-imide) s derived from N N -(pyromellitoyl)-bis-L-leucine diacid chloride and aromatic diamines under microwave irradiation
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
Some Research Projects
Alimorovat Amiri
Aarabi Mohammad Javad
Abbas Nezhad Hassan
Theses Supervised
Dr. Rezaei