A high dispersion of the active metal phase of transition metals on oxide supports is important when designing efficient heterogeneous catalysts. Besides nanoparticles, clusters and even single metal atoms can be attractive for a wide range of reactions. However, many industrially relevant catalytic transformations suffer from structure sensitivity, where reducing the size of the metal particles below a certain size substantially lowers catalytic performance. A case in point is the low activity of small cobalt nanoparticles in the hydrogenation of CO and CO2. Here we show how engineering of catalytic sites at the metal–oxide interface in cerium oxide–zirconium dioxide (ceria–zirconia)-supported cobalt can overcome this structure sensitivity...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Detailed understanding of structure sensitivity, a central theme in heterogeneous catalysis, is impo...
Detailed understanding of structure sensitivity, a central theme in heterogeneous catalysis, is impo...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
A high dispersion of the active metal phase of transition metals on oxide supports is important when...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Metal–support interactions have a strong impact on the performance of heterogeneous catalysts. Speci...
Detailed understanding of structure sensitivity, a central theme in heterogeneous catalysis, is impo...
Detailed understanding of structure sensitivity, a central theme in heterogeneous catalysis, is impo...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...
Continuous efforts in the field of materials science have allowed us to generate smaller and smaller...