Metal–support interactions have been widely utilized for optimizing the catalytic reactivity of oxide-supported Au nanoparticles. Optimized reactivity was mainly detected with small (1–5 nm) oxide-supported Au nanoparticles and correlated to highly reactive sites at the oxide–metal interface. However, catalytically active sites are not necessarily restricted to the interface but reside as well on the Au surface. Uncovering the interconnection between reactive sites located at the interface and those situated at the metal surface is of crucial importance for understanding the reaction mechanism on Au nanoparticles. Herein, high-spatial-resolution IR nanospectroscopy measurements were conducted to map the localized reactivity in hydrogenation...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Water adsorbed at the metal–support interface (MSI) plays an important role in multiple reactions. D...
© 2017 American Chemical Society. Gold nanoparticles (AuNPs) display distinct characteristics as hyd...
Metal-support interactions have been widely utilized for optimizing the catalytic reactivity of oxid...
Metal-support interactions have been widely utilized for optimizing the catalytic reactivity of oxid...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
To make available atomic oxygen at the surface of a catalyst is the key step for oxidation reactions...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
The interactions between transition metal nanoparticles and their metal-oxide supports are often cri...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Water adsorbed at the metal–support interface (MSI) plays an important role in multiple reactions. D...
© 2017 American Chemical Society. Gold nanoparticles (AuNPs) display distinct characteristics as hyd...
Metal-support interactions have been widely utilized for optimizing the catalytic reactivity of oxid...
Metal-support interactions have been widely utilized for optimizing the catalytic reactivity of oxid...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
To make available atomic oxygen at the surface of a catalyst is the key step for oxidation reactions...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In order to design catalytic materials, we need to understand the essential causes for material prop...
In order to design catalytic materials, we need to understand the essential causes for material prop...
The interactions between transition metal nanoparticles and their metal-oxide supports are often cri...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Water adsorbed at the metal–support interface (MSI) plays an important role in multiple reactions. D...
© 2017 American Chemical Society. Gold nanoparticles (AuNPs) display distinct characteristics as hyd...