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Pd/Fe3O4 Nanofibers for the Catalytic Conversion of Lignin-Derived Benzyl Phenyl Ether under Transfer Hydrogenolysis Conditions

Academic Article
Publication Date:
2019
Short description:
Pd/Fe3O4 Nanofibers for the Catalytic Conversion of Lignin-Derived Benzyl Phenyl Ether under Transfer Hydrogenolysis Conditions / Malara, A., Paone, E., Bonaccorsi, L., Mauriello, F., Macario, A., Frontera, P.. - In: CATALYSTS. - ISSN 2073-4344. - 10:1(2019), p. 20. [10.3390/catal10010020]
abstract:
Novel magnetite-supported palladium catalysts, in the form of nanofiber materials, were prepared by using the electrospinning process. Two different synthetic techniques were used to add palladium to the nanofibers: (i) the wet impregnation of palladium on the Fe3O4 electrospun support forming the Pd/Fe3O4[wnf] catalyst or (ii) the direct co-electrospinning of a solution containing both metal precursor specimens leading to a Pd/Fe3O4[cnf] sample. The obtained Pd-based Fe3O4 nanofibers were tested in the transfer hydrogenolysis of benzyl phenyl ether (BPE), one of the simplest lignin-derived aromatic ethers, by using 2-propanol as H-donor/solvent, and their performances were compared with the analogous impregnated Pd/Fe3O4 catalyst and a commercial Pd/C. A morphological and structural characterization of the investigated catalysts was performed by means of SEM-EDX, TGA-DSC, XRD, TEM, H2-TPR, and N2 isotherm at 77 K analysis. Pd/Fe3O4[wnf] was found to be the best catalytic system allowing a complete BPE conversion after 360 min at 240◦C and a good reusability in up to six consecutive recycling tests.
Iris type:
1.1 Articolo in rivista
List of contributors:
Malara, Angela; Paone, Emilia; Bonaccorsi, Lucio; Mauriello, Francesco; Macario, Anastasia; Frontera, Patrizia
Authors of the University:
BONACCORSI Lucio Maria
FRONTERA Patrizia
MALARA Angela
MAURIELLO Francesco
PAONE Emilia
Handle:
https://iris.unirc.it/handle/20.500.12318/52923
Full Text:
https://iris.unirc.it//retrieve/handle/20.500.12318/52923/36927/catalysts-10-00020.pdf
Published in:
CATALYSTS
Journal
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