April 29, 2024
Mehdi Hatami

Mehdi Hatami

Academic rank: Associate professor
Address: Department of Polymer Science and Engineering, University of Bonab, P.O. Box 5551761167, Bonab, Iran
Education: Ph.D in Polymer chemistry
Phone: 04137745000
Faculty: Faculty of Engineering
Department: Polymer Engineering

Research

Title
Magnetic nanocomposite of crosslinked chitosan with 4,6-diacetylresorcinol for gold immobilization (Fe3O4@CS/DAR-Au) as a catalyst for an efficient one-pot synthesis of propargylamine
Type Article
Keywords
Diacetylresorcinol (DAR), Magnetic Chitosan, A3 coupling reactions, Propargylamine
Researchers maryam Nourmohammadi، Shamila Rouhani، Shohreh Azizi، Malik Maaza، Titus A.M.Msagati، Sadegh Rostamnia، Mehdi Hatami، samad Khaksar، Elham Zarenezhad، Ho Won Jang، Mohammadreza Shokouhimehr

Abstract

The magnetic DAR-chitosan was synthesized by condensation of magnetic chitosan [Fe3O4@CS] with freshly synthesized diacetylresorcinol (here calls DAR) as a cross-linking agent; the Schiff base precursor on the as-prepared magnetic DAR-chitosan polymer can be coordinated with Au (III) to give magnetic DAR chitosan-based Au (III) Schiff base complex (Fe3O4@CS/DAR-AuCl3). The structural properties of Fe3O4@CS/DAR-AuCl3 have been investigated by SEM, TEM, EDX, XRD, FT-IR and XPS (techniques) analysis. The XPS study proved the presence of Au species Schiff base complex as an ion and nanoparticles onto the magnetic DAR crosslinked chitosan. Subsequently, the synthesized Fe3O4@CS/DAR-AuCl3 used as sustainable catalysts in A3 coupling reactions leading to the synthesis of propargylamine, a pharmaceutical building blocks, under mild conditions in high yields of 80–92%. Furthermore, it was proved that the magnetic Fe3O4@CS/DAR-AuCl3 was easily recovered and reached 76% of the initial activity after 8 times, which revealed good reuse capacity.