4.7 Article

Green sustainable approach for carbon-carbon bond-forming reactions using FeNPs/DETA@rGO nano-catalyst

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INORGANIC CHEMISTRY COMMUNICATIONS
卷 136, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.inoche.2021.109175

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FeNPs; Amino-modified reduced graphene oxide; Bifunctional nano-catalyst; Henry condensation reaction; Aldol condensation reaction

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In this study, we fabricated a novel nano-catalyst FeNPs/DETA@rGO with a dual activation mechanism. The catalyst exhibits excellent characteristics in terms of both base and acid properties, enabling efficient catalysis of carbon-carbon bond formation. Moreover, the catalyst showed good stability even after multiple cycles of recycling.
We have fabricated eccentric highly persuasive bifunctional FeNPs/DETA@rGO (where DETA = diethylenetriamine) nano-catalyst with a dual activation mechanism by presenting aliphatic amine on the basal and/or edges sites offering a base characteristic and FeNPs doped onto the exterior of reduced graphene oxide (rGO) proffering Lewis acid demeanor. Synthesized catalyst was thoroughly characterized by various spectral techniques. FeNPs/DETA@rGO stimulated the formation of carbon-carbon bonds through the Henry and Aldol condensation reactions using various aromatic aldehydes bestowing phenomenal activity to furnish synthetically precious multifunctional benzylidene derivatives. Besides, the catalyst was recycled up to four consecutive cycles with no momentous loss of activity.

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