Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter are well-known for their high catalytic activity for several oxidation and reduction reactions already at rather low temperatures for almost 30 years, central aspects of the reaction mechanism are still unresolved. While most studies focused on the active site, the active Au species, and the effect of the support material, the most crucial step during oxidation reactions, the activation of molecular oxygen and the nature of the resulting active oxygen species (O<sub>act</sub>), received more attention just recently.This is topic of this Account, which focuses on the formation, location, and nature of the O<sub>act</sub> species present on meta...
We address the question of the nature of Au NP activation and through a combination of experimental ...
textThe chemical nature of gold has been determined to be much richer than previously thought. Recen...
Gold nanoparticles (Au NPs) on oxygen-free supports were examined using near ambient pressure X-ray ...
The objective of the present work was to resolve mechanistic details, on a molecular scale, as well ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Recently, there has been increasing evidence that CO oxidation on TiO<sub>2</sub> supported Au catal...
textGold has been considered catalytically inert due to its resistance to oxidation and corrosion. H...
Gold nanoparticles (Au NPs) on oxygen-free supports were examined using near ambient pressure X-ray ...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
Experimental catalytic activity measurements, Diffuse Reflectance Infrared Fourier Spectroscopy, and...
We present results of ab initio electronic structure and molecular dynamics simulations (AIMD), as w...
We present results of ab initio electronic structure and molecular dynamics simulations (AIMD), as w...
TiO<sub>2</sub>-supported gold nanoparticles exhibit surprising catalytic activity for oxidation rea...
We address the question of the nature of Au NP activation and through a combination of experimental ...
textThe chemical nature of gold has been determined to be much richer than previously thought. Recen...
Gold nanoparticles (Au NPs) on oxygen-free supports were examined using near ambient pressure X-ray ...
The objective of the present work was to resolve mechanistic details, on a molecular scale, as well ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Recently, there has been increasing evidence that CO oxidation on TiO<sub>2</sub> supported Au catal...
textGold has been considered catalytically inert due to its resistance to oxidation and corrosion. H...
Gold nanoparticles (Au NPs) on oxygen-free supports were examined using near ambient pressure X-ray ...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
Experimental catalytic activity measurements, Diffuse Reflectance Infrared Fourier Spectroscopy, and...
We present results of ab initio electronic structure and molecular dynamics simulations (AIMD), as w...
We present results of ab initio electronic structure and molecular dynamics simulations (AIMD), as w...
TiO<sub>2</sub>-supported gold nanoparticles exhibit surprising catalytic activity for oxidation rea...
We address the question of the nature of Au NP activation and through a combination of experimental ...
textThe chemical nature of gold has been determined to be much richer than previously thought. Recen...
Gold nanoparticles (Au NPs) on oxygen-free supports were examined using near ambient pressure X-ray ...