The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of biomass into many important chemicals that are currently mainly being produced from fossil-based ethylene feedstock. We employ here DFT calculations to understand the unprecedented synergy between gold clusters and a MgCuCr2O4 spinel support, which shows excellent catalytic performance for the oxidation of ethanol to acetaldehyde (space-time yield of 311 gacetaldehyde.ggold-1.h-1 at 250°C). The investigations support a mechanism involving catalytic reactions at the gold-support interface. Dissociative adsorption of ethanol is facilitated by cooperative action of a gold atom at the metal cluster-support interface and a basic oxygen atom of th...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
The catalytic oxidation of bio-ethanol to acetaldehyde entails a promising route for valorization of...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
A ternary MgCuCr2O4 spinel-supported gold nanoparticle catalyst is optimized toward high acetaldehyd...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...
Gold nanoparticles (AuNP) supported on spinel MgCuCr2O4 are highly active and selective for the oxid...