Synergistic effect of GO/SrFe 12 O 19 as magnetic hybrid nanocatalyst for regioselective ring-opening of epoxides with amines under eco-friendly conditions

Herein, a highly efficient magnetically separable hybrid GO/SrFe O nanocomposite was synthesized dispersing M-type strontium hexaferrite (SrFe O ) on graphene oxide (GO) sheets. First, SrFe O nanoparticles (NPs) and GO sheets were prepared chemical coprecipitation and chemical oxidation of graphite...

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Veröffentlicht in:RSC advances 2022-04, Vol.12 (18), p.11139-11154
Hauptverfasser: Laayati, Mouhsine, Mekkaoui, Ayoub Abdelkader, Fkhar, Lahcen, Ait Ali, Mustapha, Anane, Hafid, Bahsis, Lahoucine, El Firdoussi, Larbi, El Houssame, Soufiane
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Sprache:eng
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Zusammenfassung:Herein, a highly efficient magnetically separable hybrid GO/SrFe O nanocomposite was synthesized dispersing M-type strontium hexaferrite (SrFe O ) on graphene oxide (GO) sheets. First, SrFe O nanoparticles (NPs) and GO sheets were prepared chemical coprecipitation and chemical oxidation of graphite powder, respectively. Chemically reduced GO (rGO) and rGO/SrFe O were also prepared for comparison purposes. Thereafter, the prepared nanostructured materials were explored by XRD, FTIR, FESEM-EDX, BET, and Zetasizer analyses. All the characterizations confirm the nanoscale and the high stability structures of the prepared materials. The prepared hybrid magnetic nanocomposite GO/SrFe O exhibited a high surface area value resulting in a high catalytic activity and selectivity for the epoxide ring-opening with amines in neat water. The use of hybrid GO/SrFe O compared with pure SrFe O and GO sheets is of great interest for using environmentally benign heterogeneous nanocatalysts, for the synthesis of β-amino alcohols, with excellent recyclability under eco-friendly conditions. Moreover, a mechanistic study was performed through density functional theory (DFT) calculations and Parr functions to explain the observed reactivity and selectivity of SrFe-GO catalyst in the epoxide ring-opening reactions.
ISSN:2046-2069
2046-2069
DOI:10.1039/D2RA00984F