Interactions between transition metal nanoparticles and reducible oxide supports are thought to significantly affect the performance of many catalysts. Usually, several metal-support effects act together and cannot be separated from each other. Herein, by means of density-functional calculations we succeeded to single out and quantify effects of the metal-support electron transfer on the structure and electronic properties of important model Pt-ceria catalysts. Namely, we considered ∼1.5 nm large Pt95 and Pt122 particles supported on CeO2(1 1 1). We show that Pt-ceria interactions notably reconstruct Pt nanofacets forming the interface and shift valence d-states of the Pt particles. These effects are rather insensitive to the Pt-ceria elect...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
Single-atom catalysts represent the ultimate extreme in heterogeneous catalysis for the maximum disp...
Electrochemical promotion and metal-support interaction (MSI) have long been viewed as two separate ...
Electronic interactions between metal nanoparticles and oxide supports control the functionality of ...
Understanding the inherent catalytic nature of the interface between metal nanoparticles (NPs) and o...
The interaction of a series of different transition metal atoms with nanoparticulate CeO2 has been s...
A detailed atomic scale description of the interfaces between cerium oxide and metals is necessary f...
The work is focused on understanding the dynamics of the processes which occur at the interface betw...
Metal oxide supports often play an active part in heterogeneous catalysis by moderating both the str...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Conventional supported metal catalysts are metal nanoparticles deposited on high surface area oxide ...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
The thesis entiteled “Density Functional Modelling of Materials for Fuel Cell Catalysts with Reduced...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Supported Pt nanoparticles are key components in heterogeneous catalysis for energy and environment ...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
Single-atom catalysts represent the ultimate extreme in heterogeneous catalysis for the maximum disp...
Electrochemical promotion and metal-support interaction (MSI) have long been viewed as two separate ...
Electronic interactions between metal nanoparticles and oxide supports control the functionality of ...
Understanding the inherent catalytic nature of the interface between metal nanoparticles (NPs) and o...
The interaction of a series of different transition metal atoms with nanoparticulate CeO2 has been s...
A detailed atomic scale description of the interfaces between cerium oxide and metals is necessary f...
The work is focused on understanding the dynamics of the processes which occur at the interface betw...
Metal oxide supports often play an active part in heterogeneous catalysis by moderating both the str...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Conventional supported metal catalysts are metal nanoparticles deposited on high surface area oxide ...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
The thesis entiteled “Density Functional Modelling of Materials for Fuel Cell Catalysts with Reduced...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Supported Pt nanoparticles are key components in heterogeneous catalysis for energy and environment ...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
Single-atom catalysts represent the ultimate extreme in heterogeneous catalysis for the maximum disp...
Electrochemical promotion and metal-support interaction (MSI) have long been viewed as two separate ...