In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a series of bimetallic Pd-Pt catalysts with different Pd:Pt molar ratios. The catalysts were found to contain both alloyed PdPt nanoparticles (particle sizes 25-35 nm) and monometallic Pd nanoparticles (sizes below 10 nm). For oxygen-free conditions, CO reduces the surface while simultaneously function as a chemical probe molecule whereby the CO adsorption sites can be characterized. Under these conditions, it is shown that adsorbed carbonyl species form both on the Pd and Pt. On platinum, CO adsorbs predominantly linearly on top, whereas on palladium it adsorbes in bridged configurations. This behavior is used for site speciation of the catalysts....
Alumina supported Pd catalysts with metal loadings of 0.5, 2.5 and 10 wt% were investigated by in si...
To improve the understanding of the applicability of CO-FTIR spectroscopy for probing the electronic...
Aiming at knowledge-driven design of novel metal–ceria catalysts for automotive exhaust abatement, c...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
CO oxidation reaction was studied over monometallic and bimetallic palladium-platinum catalysts at 2...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
A large signal of gas-phase CO overlapping with those of adsorbates is often present when investigat...
γ-Alumina is widely used as an oxide support in catalysis, and palladium nanoparticles supported by ...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Alumina supported Pd catalysts with metal loadings of 0.5, 2.5 and 10 wt% were investigated by in si...
To improve the understanding of the applicability of CO-FTIR spectroscopy for probing the electronic...
Aiming at knowledge-driven design of novel metal–ceria catalysts for automotive exhaust abatement, c...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
In situ Fourier transform infrared spectroscopy was used to study transient CO oxidation over a seri...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
CO oxidation reaction was studied over monometallic and bimetallic palladium-platinum catalysts at 2...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
A large signal of gas-phase CO overlapping with those of adsorbates is often present when investigat...
γ-Alumina is widely used as an oxide support in catalysis, and palladium nanoparticles supported by ...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Alumina supported Pd catalysts with metal loadings of 0.5, 2.5 and 10 wt% were investigated by in si...
To improve the understanding of the applicability of CO-FTIR spectroscopy for probing the electronic...
Aiming at knowledge-driven design of novel metal–ceria catalysts for automotive exhaust abatement, c...