Functionalization of metal-organic frameworks with metal nanoparticles (NPs) is a promising way for producing advanced materials for catalytic applications. We present the synthesis and in situ characterization of palladium NPs encapsulated inside a functionalized UiO-67 metal-organic framework. The initial structure was synthesized with 10% of PdCl(2)bpydc moieties with grafted Pd ions replacing standard 4,4-biphenyldicarboxylate linkers. This material exhibits the same high crystallinity and thermal stability of standard UiO-67. Formation of palladium NPs was initiated by sample activation in hydrogen and monitored by in situ X-ray powder diffraction and X-ray absorption spectroscopy (XAS). The reduction of Pd-II ions to Pd-0 occurs above 200 degrees C in 6% H-2/He flow. The formed palladium NPs have an average size of 2.1 nm as limited by the cavities of UiO-67 structure. The resulting material showed high activity towards ethylene hydrogenation. Under reaction conditions, palladium was found to form a carbide structure indicated by operando XAS, while formation of ethane was monitored by mass spectroscopy and infra-red spectroscopy.

Operando study of palladium nanoparticles inside UiO-67 MOF for catalytic hydrogenation of hydrocarbons

Bugaev, A L;Lomachenko, Kirill A;Braglia, Luca;Lazzarini, Andrea;Manzoli, Maela;Bordiga, Silvia;Lillerud, Karl P;Soldatov, Alexander V;Lamberti, Carlo
2018-01-01

Abstract

Functionalization of metal-organic frameworks with metal nanoparticles (NPs) is a promising way for producing advanced materials for catalytic applications. We present the synthesis and in situ characterization of palladium NPs encapsulated inside a functionalized UiO-67 metal-organic framework. The initial structure was synthesized with 10% of PdCl(2)bpydc moieties with grafted Pd ions replacing standard 4,4-biphenyldicarboxylate linkers. This material exhibits the same high crystallinity and thermal stability of standard UiO-67. Formation of palladium NPs was initiated by sample activation in hydrogen and monitored by in situ X-ray powder diffraction and X-ray absorption spectroscopy (XAS). The reduction of Pd-II ions to Pd-0 occurs above 200 degrees C in 6% H-2/He flow. The formed palladium NPs have an average size of 2.1 nm as limited by the cavities of UiO-67 structure. The resulting material showed high activity towards ethylene hydrogenation. Under reaction conditions, palladium was found to form a carbide structure indicated by operando XAS, while formation of ethane was monitored by mass spectroscopy and infra-red spectroscopy.
2018
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0
287
306
https://pubs.rsc.org/en/Content/ArticleLanding/2018/FD/C7FD00224F#!divAbstract
UiO-67, metal–organic frameworks, metal nanoparticles, palladium, EXAFS, XANES, XRD, functionalization, TEM, ethylene hydrogenation
Bugaev, A L; Guda, Alexander A; Lomachenko, Kirill A; Kamyshova, Elizaveta G; Soldatov, Mikhail A; Kaur, Gurpreet; Øien-Ødegaard, Sigurd; Braglia, Luc...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1686838
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