Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Specific sites at the metal–support interface can give rise to unusual high reactivity, and there is a growing interest in optimizing not only the properties of metal particles but also the metal–support interface. Here, we demonstrate how varying the particle size of the support (ceria–zirconia) can be used to tune the metal–support interactions, resulting in a substantially enhanced CO2 hydrogenation rate. A combination of X-ray diffraction, X-ray absorption spectroscopy, near-ambient pressure X-ray photoelectron spectroscopy, transmission electron microscopy and infrared spectroscopy provides insight into the active sites at the interface betwe...
Tuning CO2 hydrogenation selectivity to obtain targeted value-added chemicals and fuels has attracte...
Controlling the selectivity of products among CO, methane, and methanol is a challenge in CO2 hydrog...
Interactions between ceria (CeO2) and supported metals greatly enhance rates for a number of importa...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
Identification of the key factors governing the activity and product selectivity of CO2 hydrogenatio...
A one-step ligand-free method based on an adsorption-precipitation process was developed to fabricat...
The particle size of CeO2 was controlled to study the selectivity toward CO production in CO2 hydrog...
Summarization: CO2 hydrogenation to value added chemicals/fuels has gained considerable interest, in...
Ceria-based oxides have been extensively involved in a wide range of catalytic applications due to t...
As a step in production of so-called electrofuels, ambient pressure CO2 hydrogenation has been inves...
The metal-support interfaces of metallic nanoparticles supported on oxide surfaces determine the act...
Transforming carbon dioxide into valuable chemicals and fuels, is a promising tool for environmental...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
The relation between catalytic reactivities and metal/metal oxide ratios, as well as the functions o...
Tuning CO2 hydrogenation selectivity to obtain targeted value-added chemicals and fuels has attracte...
Controlling the selectivity of products among CO, methane, and methanol is a challenge in CO2 hydrog...
Interactions between ceria (CeO2) and supported metals greatly enhance rates for a number of importa...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
Identification of the key factors governing the activity and product selectivity of CO2 hydrogenatio...
A one-step ligand-free method based on an adsorption-precipitation process was developed to fabricat...
The particle size of CeO2 was controlled to study the selectivity toward CO production in CO2 hydrog...
Summarization: CO2 hydrogenation to value added chemicals/fuels has gained considerable interest, in...
Ceria-based oxides have been extensively involved in a wide range of catalytic applications due to t...
As a step in production of so-called electrofuels, ambient pressure CO2 hydrogenation has been inves...
The metal-support interfaces of metallic nanoparticles supported on oxide surfaces determine the act...
Transforming carbon dioxide into valuable chemicals and fuels, is a promising tool for environmental...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
The relation between catalytic reactivities and metal/metal oxide ratios, as well as the functions o...
Tuning CO2 hydrogenation selectivity to obtain targeted value-added chemicals and fuels has attracte...
Controlling the selectivity of products among CO, methane, and methanol is a challenge in CO2 hydrog...
Interactions between ceria (CeO2) and supported metals greatly enhance rates for a number of importa...