4.7 Article

Heterogeneous Hybrid Nanocomposite Based on Chitosan/Magnesia Hybrid Films: Ecofriendly and Recyclable Solid Catalysts for Organic Reactions

Journal

POLYMERS
Volume 13, Issue 20, Pages -

Publisher

MDPI
DOI: 10.3390/polym13203583

Keywords

chitosan; magnesia; heterogeneous catalyst; nanocomposites; Michael additions; Knoevenagel reactions

Funding

  1. Research Administration at Kuwait University [GS01/03, GS01/05, GS03/01, GS01/01]

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Chitosan/magnesia hybrid films prepared via sol-gel process exhibit excellent catalytic activities in various reactions. The films are durable, insoluble in common organic solvents, and can be easily separated and recycled up to five times without significant loss of their catalytic activity.
Chitosan/magnesia hybrid films (CS-Mg) have been prepared via sol-gel process and employed as heterogeneous catalysts. An in situ generation of a magnesia network in the chitosan matrix was performed through hydrolysis/condensation reactions of magnesium ethoxide. The synthesized hybrid films were characterized using various analytical techniques, such as X-ray photo-electron spectroscopy (XPS), field emission scanning electron microscopy (FESEM) and atomic force microscopy (AFM). The hybrid films display excellent catalytic activities in Michael and Knoevenagel reactions via one pot or solvent-free approaches under microwave irradiation conditions. Chitosan/magnesia hybrid films, catalysed pyrimidine, benzochromene, coumarin and arylidene-malononitriles derivatives formation reactions occurred with highly efficient yields of 97%, 92%, 86% and 95% respectively. Due to the fact that the films are durable and insoluble in common organic solvents, they were easily separated and can be recycled up to five times without a considerable loss of their catalytic activity.

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