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Electrospun core -shell nanofibers based on polyethylene oxide reinforced by multiwalled carbon nanotube and silicon dioxide nanofillers: A novel and effective solvent\u2010free electrolyte for lithium ion batteries
Electrospun core -shell nanofibers based on polyethylene oxide reinforced by multiwalled carbon nanotube and silicon dioxide nanofillers: A novel and effective solvent\u2010free electrolyte for lithium ion batteries
Electrospun core -shell nanofibers based on polyethylene oxide reinforced by multiwalled carbon nanotube and silicon dioxide nanofillers: A novel and effective solvent\u2010free electrolyte for lithium ion batteries
Microwave Heating in Conjunction with Ionic Liquid as a Novel Method for the Fast Synthesis of Optically Active Poly(amide- imide)s Derived from N,N'-(4,4'Hexa fluoroisopropylidenediphthaloyl)-bis-L- methionine and Various Aromatic Diamines
Preparation morphological and thermal characterization of novel nanocomposites based on poly (amide-ester-imide) containing amino acid and nano-Mg-doped fluorapatite surface modified with biodegradable diacid N-trimellitylimido-L-leucine
Preparation morphological and thermal characterization of novel nanocomposites based on poly (amide-ester-imide) containing amino acid and nano-Mg-doped fluorapatite surface modified with biodegradable diacid N-trimellitylimido-L-leucine
Facile and Rapid Synthesis of Novel Optically Active Poly(amide-imide-urethane)s Derived from Bis(p-amido benzoic acid)-N-trimellitylimido-L-lucine and polyoxyethyl-ene-MDI under microwave irradition
Publications
Group News
Nanostructured amino acid containing poly(amide-imide)s from different diisocyanates: synthesis and morphology properties in molten TBAB as a green media
Research Area
Instrumentation and Measurement
Teaching
Dr. Leila Mirmoghtadaie (Ph.D)
2014, Ali HasanNia Graduated