Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/45041
Title: The influence of size, metal loading and oxygen vacancies on the catalytic performance of Au/ CeO2−x in the sunlight-powered reverse water gas shift reaction
Authors: VOLDERS, Jordi 
Bossier, Sander
STULENS, Sander 
JOOS, Bjorn 
VRANKEN, Thomas 
Sastre, Francesc
D'HAEN, Jan 
ELEN, Ken 
Verheijen, Marcel A.
Cool, Pegie
HARDY, An 
BUSKENS, Pascal 
VAN BAEL, Marlies 
Issue Date: 2024
Publisher: ROYAL SOC CHEMISTRY
Source: Catalysis science & technology,
Status: Early view
Abstract: This study reports the conversion of CO2 and H2 to CO and H2O at low temperature and low pressure (up to 203 degrees C, p = 3.5 bar) using plasmonic Au/CeO2-x photocatalysts, with mildly concentrated sunlight as the sole energy source (up to 9 kW m-2). Systematic catalytic studies were carried out by varying the CeO2-x particle size, Au particle size and loading, and the concentration of oxygen vacancies. Upon illumination, all Au/CeO2-x catalysts showed a CO production of up to 2.6 +/- 0.2 mmol CO per gAu per h (104 +/- 8 mu mol CO per gcat per h), while the supports without Au did not show any activity. We determined that both photothermal and non-thermal effects contribute to the light-driven reverse water-gas shift reaction catalysed by plasmonic Au/CeO2-x. A photothermal contribution was found from the exponential relationship between the CO production and the solar irradiance. In the dark, all Au/CeO2-x photocatalysts and supports without Au produced CH4 instead of CO with >= 97% selectivity, indicating a significant non-thermal contribution in light. A linear dependence of catalytic activity on the accessible interface area between CeO2-x and Au was found, which is in line with an associative formate-mediated reaction mechanism occurring at the metal-support interface. Tuning the VO content through thermal treatments yielded decreased photocatalytic activity for oxidised samples, identifying them as pre-catalysts. The stability of the Au/CeO2-x photocatalysts was evaluated, demonstrating that the catalytic performance was affected by adsorption of H2O as a reaction product, which could be fully restored upon heating in vacuo.
Notes: Buskens, P; Van Bael, MK (corresponding author), Hasselt Univ, Inst Mat Res Imo Imomec, DESINe Grp, Agoralaan Bldg D, B-3590 Diepenbeek, Belgium.; Van Bael, MK (corresponding author), IMEC VZW, IMOMEC Associated Lab, Wetenschapspk 1, B-3590 Diepenbeek, Belgium.; Van Bael, MK (corresponding author), EnergyVille, Thor Pk 8320, B-3600 Genk, Belgium.; Buskens, P (corresponding author), Netherlands Org Appl Sci Res TNO, Eindhoven, Netherlands.
pascal.buskens@tno.nl; marlies.vanbael@uhasselt.be
Document URI: http://hdl.handle.net/1942/45041
ISSN: 2044-4753
e-ISSN: 2044-4761
DOI: 10.1039/d4cy01194e
ISI #: 001373012400001
Rights: The Royal Society of Chemistry 2024. Open Access Article. Published on 10 December 2024. Downloaded on 1/10/2025 8:21:44 AM. This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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