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Mechanism of Catalytic CO Hydrogenation to Methane and Methanol Using a Bimetallic CuPd Cluster at a Zirconia Support

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Abstract

For very small nanocluster-based catalysts, the exploration of the influence of the particle size, composition, and support offers precisely variable parameters in a wide material search space to control catalysts' performance. We present the mechanism of the CO methanation reaction on the oxidized bimetallic CuPd tetramer (CuPdO) supported on a zirconia model support represented by ZrO based on the energy profile obtained from density functional theory calculations on the reaction of CO and H. In order to determine the role of the Pd atom, the performance of CuPdO with monometallic CuO at the same support has been compared. Parallel to methane formation, the alternative path of methanol formation at this catalyst has also been investigated. The results show that the exchange of a single atom in Cu with a single Pd atom improves catalyst/s performance via lowering the barriers associated with hydrogen dissociation steps that occur on the Pd atom. The above-mentioned results suggest that the doping strategy at the level of single atoms can offer a precise control knob for designing new catalysts with desired performance.

References
1.
Halder A, Lee S, Yang B, Pellin M, Vajda S, Li Z . Structural reversibility of Cu doped NU-1000 MOFs under hydrogenation conditions. J Chem Phys. 2020; 152(8):084703. DOI: 10.1063/1.5130600. View

2.
Liu C, Yang B, Tyo E, Seifert S, DeBartolo J, von Issendorff B . Carbon Dioxide Conversion to Methanol over Size-Selected Cu4 Clusters at Low Pressures. J Am Chem Soc. 2015; 137(27):8676-9. DOI: 10.1021/jacs.5b03668. View

3.
Grimme S, Antony J, Ehrlich S, Krieg H . A consistent and accurate ab initio parametrization of density functional dispersion correction (DFT-D) for the 94 elements H-Pu. J Chem Phys. 2010; 132(15):154104. DOI: 10.1063/1.3382344. View

4.
Alvarez A, Borges M, Corral-Perez J, Olcina J, Hu L, Cornu D . CO Activation over Catalytic Surfaces. Chemphyschem. 2017; 18(22):3135-3141. DOI: 10.1002/cphc.201700782. View

5.
Halder A, Kioseoglou J, Yang B, Kolipaka K, Seifert S, Ilavsky J . Nanoassemblies of ultrasmall clusters with remarkable activity in carbon dioxide conversion into C1 fuels. Nanoscale. 2019; 11(11):4683-4687. DOI: 10.1039/c8nr06664g. View