| Literature DB >> 33633123 |
Hojat Veisi1, Bikash Karmakar2, Taiebeh Tamoradi3, Reza Tayebee4, Sami Sajjadifar3, Shahram Lotfi3, Behrooz Maleki4, Saba Hemmati3.
Abstract
This current research is based on a bio-inspired procedure for the synthesis of biomolecule functionalized hybrid magnetic nanocomposite with the Fe3O4 NPs at core and Pd NPs at outer shell. The central idea was the initial modification of magnetic NP by the phytochemicals from Fritillaria imperialis flower extract, which was further exploited in the green reduction of Pd2+ ions into Pd NPs, in situ. The flower extract also acted as a capping agent for the obtained Pd/Fe3O4 composite without the need of additional toxic reagents. The as-synthesized Fe3O4@Fritillaria/Pd nanocomposite was methodically characterized over different physicochemical measures like FT-IR, ICP-AES, FESEM, EDX, TEM, XPS and VSM analysis. Thereafter, its catalytic potential was evaluated in the reduction of various nitrobenzenes to arylamines applying hydrazine hydrate as reductant in ethanol/water (1:2) medium under mild conditions. Furthermore, the nanocatalyst was retrieved using a bar magnet and recycled several times without considerable leaching or loss of activity. This green, bio-inspired ligand-free protocol has remarkable advantages like environmental friendliness, high yields, easy workup and reusability of the catalyst.Entities:
Year: 2021 PMID: 33633123 PMCID: PMC7907383 DOI: 10.1038/s41598-021-83854-1
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379