Design, synthesis and application of a magnetic H-bond catalyst in the preparation of new nicotinonitriles via cooperative vinylogous anomeric-based oxidation.
Mahdiyeh NavazeniMohammad Ali ZolfigolHossein AhmadiHassan SepehrmansourieArdeshir KhazaeiMojtaba HosseinifardPublished in: RSC advances (2024)
Herein, we designed and synthesized a new H-bond magnetic catalyst with 2-tosyl- N -(3-(triethoxysilyl)propyl)hydrazine-1-carboxamide as a sensitive H-bond donor/acceptor. We created an organic structure with a urea moiety on the magnetic nanoparticles, which can function as a hydrogen bond catalyst. Hydrogen bond catalysts serve as multi-donor/-acceptor sites. Additionally, we utilized magnetic nanoparticles in the production of the target catalyst, giving it the ability to be recycled and easily separated from the reaction medium with an external magnet. We evaluated the catalytic application of Fe 3 O 4 @SiO 2 @tosyl-carboxamide as a new magnetic H-bond catalyst in the synthesis of new nicotinonitrile compounds through a multicomponent reaction under solvent-free and green conditions with high yields (50-73%). We confirmed the structure of Fe 3 O 4 @SiO 2 @tosyl-carboxamide using various techniques. In addition, the structures of the desired nicotinonitriles were confirmed using melting point, 1 H-NMR, 13 C-NMR and HR-mass spectrometry analysis. The final step of the reaction mechanism was preceded via cooperative vinylogous anomeric-based oxidation (CVABO).
Keyphrases
- magnetic nanoparticles
- visible light
- ionic liquid
- highly efficient
- room temperature
- high resolution
- electron transfer
- metal organic framework
- reduced graphene oxide
- molecularly imprinted
- transition metal
- mass spectrometry
- carbon dioxide
- magnetic resonance
- hydrogen peroxide
- liquid chromatography
- gold nanoparticles
- solar cells
- nitric oxide
- solid phase extraction
- capillary electrophoresis
- quantum dots
- fluorescent probe
- simultaneous determination