Structure-activity mapping is central to the exploitation and optimisation of nanomaterial catalysts in a variety of technologically important heterogeneous reactions, such as automotive catalysis and water gas shift reactions. Here, we present a catalytic activity map for nanoceria, calculated as a function of shape, size, architecture and defect content, using atom-level models. The activity map reveals that as oxygen is gradually depleted from the nanoceria catalyst, so it becomes energetically more difficult to extract further oxygen. We propose that the oxygen storage capacity (OSC) of ceria corresponds to the level of oxygen depletion where it becomes thermodynamically prohibitive to extract further oxygen from the material (positive...
Ceria–terbia solid solution nanobelts were prepared by an electrochemical route and tested as cataly...
Cerium oxide (ceria, CeO2-x where x is 0 to 0.5) has been one of the most widely used heterogeneous ...
12 figures, 2 tablesThis paper reveals the key importance of surface oxygen defects in the oxidation...
Structure–activity mapping is central to the exploitation and optimization of nanomaterial catalysts...
Structure-activity mapping is central to the exploitation and optimization of nanomaterial catalysts...
Engineering the shape and size of catalyst particles and the interface between different components ...
AbstractThis paper reveals the key importance of surface oxygen defects in the oxidation catalytic a...
Nanoceria, typically used for ‘clean air’ catalytic converter technologies, is the same material tha...
Catalytic mechanisms, and therefore activity, depend on the structure of catalyst surfaces. In turn,...
Reverse water gas shift reaction (RWGS) was investigated over cerium oxide catalysts of distinct mor...
Cerium dioxide is an active material for catalysis due to its oxygen storage/release capacity. The p...
International audienceThe ability to control the size and morphology is crucial in optimizing nanoce...
Magister Philosophiae - MPhilDue to an increasing demand for energy, alternative renewable energy so...
We calculate, using simulated amorphisation and recrystallisation (A&R), that ceria (CeO2) nanop...
The ability to control size and morphology is crucial in optimizing nanoceria catalytic activity as ...
Ceria–terbia solid solution nanobelts were prepared by an electrochemical route and tested as cataly...
Cerium oxide (ceria, CeO2-x where x is 0 to 0.5) has been one of the most widely used heterogeneous ...
12 figures, 2 tablesThis paper reveals the key importance of surface oxygen defects in the oxidation...
Structure–activity mapping is central to the exploitation and optimization of nanomaterial catalysts...
Structure-activity mapping is central to the exploitation and optimization of nanomaterial catalysts...
Engineering the shape and size of catalyst particles and the interface between different components ...
AbstractThis paper reveals the key importance of surface oxygen defects in the oxidation catalytic a...
Nanoceria, typically used for ‘clean air’ catalytic converter technologies, is the same material tha...
Catalytic mechanisms, and therefore activity, depend on the structure of catalyst surfaces. In turn,...
Reverse water gas shift reaction (RWGS) was investigated over cerium oxide catalysts of distinct mor...
Cerium dioxide is an active material for catalysis due to its oxygen storage/release capacity. The p...
International audienceThe ability to control the size and morphology is crucial in optimizing nanoce...
Magister Philosophiae - MPhilDue to an increasing demand for energy, alternative renewable energy so...
We calculate, using simulated amorphisation and recrystallisation (A&R), that ceria (CeO2) nanop...
The ability to control size and morphology is crucial in optimizing nanoceria catalytic activity as ...
Ceria–terbia solid solution nanobelts were prepared by an electrochemical route and tested as cataly...
Cerium oxide (ceria, CeO2-x where x is 0 to 0.5) has been one of the most widely used heterogeneous ...
12 figures, 2 tablesThis paper reveals the key importance of surface oxygen defects in the oxidation...