Adjustment of the Single Atom/Nanoparticle Ratio in Pd/CNT Catalysts for Phenylacetylene Selective Hydrogenation

Author:

Audevard Jérémy1ORCID,Navarro‐Ruiz Javier2ORCID,Bernardin Vincent3ORCID,Tison Yann4ORCID,Corrias Anna5ORCID,Del Rosal Iker2ORCID,Favre‐Réguillon Alain36ORCID,Philippe Régis3ORCID,Gerber Iann C.2ORCID,Serp Philippe1ORCID

Affiliation:

1. LCC–CNRS Université de Toulouse UPR 8241 CNRS INPT F-31030 Toulouse France

2. Université de Toulouse INSA-CNRS-UPS LPCNO F-31077 Toulouse France

3. Université Lyon CP2 M UMR 5128 CNRS – CPE Lyon F-69100 Villeurbanne France

4. Université de Pau et des Pays de l'Adour E2S UPPA CNRS IPREM Pau France

5. School of Chemistry and Forensic Science University of Kent Canterbury Ingram Building, Room 118 CT2 7NH Canterbury UK

6. Département Chimie-Vivant-Santé Conservatoire National des Arts et Métiers F-75003 Paris France

Abstract

AbstractPd/C catalysts are widely used for hydrogenation reactions in the chemical industry. One of the reasons for their high activity is the ability of Pd nanoparticles (PdNP) to dissociate H2 and promote H‐spillover. Nevertheless, for selective hydrogenation unpromoted Pd/C catalysts show disappointing results. The use of supported Pd single atom (PdSA) catalysts permits to achieve high selectivity. However, PdSA show low activity because they have difficulty in activating H2. A cooperative catalysis between PdNP and PdSA operates for the hydrogenation of alkenes thanks to the H‐spillover, which makes it possible to obtain active isolated PdSA−H species. Here, we present experimental and computational results obtained for phenylacetylene hydrogenation on Pd/CNT catalysts showing different PdSA/PdNP ratios. Tuning this ratio allows doubling the activity while reaching high selectivity to styrene at high conversion. DFT calculations suggest that the first coordination sphere of PdSA has a pronounced effect on their reactivity.

Funder

Agence Nationale de la Recherche

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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