Crotonaldehyde Adsorption on Cu-Pt Surface Alloys: A Quantum Mechanics Study

Author:

Ruvalcaba Ricardo1,Guerrero-Sanchez Jonathan1,Takeuchi Noboru1,Zaera Francisco2ORCID

Affiliation:

1. Centro de Nanociencias y Nanotecnología, Universidad Nacional Autónoma de México, Ensenada 22860, Baja California, Mexico

2. Department of Chemistry and UCR Center for Catalysis, University of California Riverside, Riverside, CA 9252, USA

Abstract

The adsorption of crotonaldehyde on Cu-Pt alloy surfaces was characterized by density functional theory (DFT). Two surfaces were considered: Cu2Pt/Cu(111) and Cu3Pt/Cu(111). It was determined that the presence of Pt on the surface, even when isolated as single atoms fully surrounded by Cu, provides additional stability for the adsorbates, increasing the magnitude of the adsorption energy by as much as 40 kJ/mol. The preferred bonding on both surfaces is via multiple coordination, with the most stable configuration being a cis arrangement with di-σ bonding of the C=O bond across a Cu–Cu bridge and an additional π bonding to a Pt atom. The fact that Pt significantly affects the adsorption of unsaturated aldehydes such as crotonaldehyde explains why the kinetics of their hydrogenation using single-atom alloy (SAA) catalysts vary with alloy composition, as we previously reported, and brings into question the simple model in which the role of Pt is only to promote the dissociation of H2.

Funder

U.S. National Science Foundation, Division of Chemistry

DGAPA-UNAM

Conacyt

DGCTIC-UNAM Supercomputing Center

Publisher

MDPI AG

Subject

Organic Chemistry,Inorganic Chemistry,Electrochemistry,Chemistry (miscellaneous)

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3. Scott, R.A. (2014). Encyclopedia of Inorganic and Bioinorganic Chemistry, John Wiley & Sons, Ltd.

4. Sinfelt, J.H. (1983). Bimetallic Catalysts: Discoveries, Concepts and Applications, John Wiley and Sons.

5. Nanoalloys:  From Theory to Applications of Alloy Clusters and Nanoparticles;Ferrando;Chem. Rev.,2008

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