Low‐Temperature Methane Activation Reaction Pathways over Mechanochemically‐Generated Ce4+/Cu+ Interfacial Sites

Author:

Mauri Silvia1ORCID,Calligaro Rudy2ORCID,Pauletti Carlo Federico3,Camellone Matteo Farnesi1ORCID,Boaro Marta2ORCID,Braglia Luca14ORCID,Fabris Stefano1ORCID,Piccinin Simone1ORCID,Torelli Piero1ORCID,Trovarelli Alessandro2ORCID

Affiliation:

1. TASC Laboratory CNR‐ Istituto Officina dei Materiali Trieste 34149 Italy

2. Dipartimento Politecnico and INSTM Università degli Studi di Udine Via del Cotonificio 108 Udine 33100 Italy

3. Physics Department Università degli Studi di Trieste Via Alfonso Valerio 2 Trieste 34127 Italy

4. AREA Science Park Padriciano 99 Trieste I‐34149 Italy

Abstract

AbstractMethane is a valuable resource and its valorization is an important challenge in heterogeneous catalysis. Here it is shown that CeO2/CuO composite prepared by ball milling activates methane at a temperature as low as 250 °C. In contrast to conventionally prepared catalysts, the formation of partial oxidation products such as methanol and formaldehyde is also observed. Through an in situ Diffuse Reflectance Infrared Fourier Transform Spectroscopy (DRIFTS) and operando Near Edge X‐Ray Absorption Fine Structure Spectroscopy (NEXAFS) approach, it can be established that this unusual reactivity can be attributed to the presence of Ce4+/Cu+ interfaces generated through a redox exchange between Ce3+ and Cu2+ atoms facilitated by the mechanical energy supplied during milling. DFT modeling of the electronic properties confirms the existence of a charge transfer mechanism. These results demonstrate the effectiveness and distinctiveness of the mechanical approach in creating unique and resilient interfaces thereby enabling the optimization and refining of CeO2/CuO catalysts in methane activation reactions.

Publisher

Wiley

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