High-energy-resolution fluorescence detection-Xray absorption near-edge structure (HERFD-XANES) at the Au L3edge was used to study gold catalysts supported on ceria in order to unravel the role of gold 5d orbital modifications during the activation of molecular oxygen. The variations in the HERFDXANES resonance peak, which are directly correlated with the dband occupancy, were monitored in situ during the redox process of the CO oxidation at room temperature under both aerobic and anaerobic conditions. Interestingly, upon the oxidation treatment and also during the aerobic CO oxidation treatment, the gold dband fluctuates around an average value, proving that the goldclusters are partially charged. The dynamism of the gold electronic configuration was evidenced by a temporary variation of the gold d-orbital population during the oxidation reaction. The interpretation of X-ray spectroscopy data is supported by ab initio simulations performed using the FDMNES code.

Dynamic Role of Gold d-Orbitals during CO Oxidation under Aerobic Conditions

Alessandro Longo
;
Maria Pia Casaletto
;
2022

Abstract

High-energy-resolution fluorescence detection-Xray absorption near-edge structure (HERFD-XANES) at the Au L3edge was used to study gold catalysts supported on ceria in order to unravel the role of gold 5d orbital modifications during the activation of molecular oxygen. The variations in the HERFDXANES resonance peak, which are directly correlated with the dband occupancy, were monitored in situ during the redox process of the CO oxidation at room temperature under both aerobic and anaerobic conditions. Interestingly, upon the oxidation treatment and also during the aerobic CO oxidation treatment, the gold dband fluctuates around an average value, proving that the goldclusters are partially charged. The dynamism of the gold electronic configuration was evidenced by a temporary variation of the gold d-orbital population during the oxidation reaction. The interpretation of X-ray spectroscopy data is supported by ab initio simulations performed using the FDMNES code.
2022
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
in situ
HERFD
XANES
d-bands
CO oxidation
Au/CeO2
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/439616
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