The oxidation of methane, the main component of natural gas, to selectively form oxygenated chemical feedstocks using molecular oxygen has been a long-standing grand challenge in catalysis. Here, using gold nanoparticles supported on the zeolite ZSM-5, we introduce a method to oxidize methane to methanol and acetic acid in water at temperatures between 120 and 240 °C using molecular oxygen in the absence of any added coreductant. Electron microscopy reveals that the catalyst does not contain gold atoms or clusters, but rather gold nanoparticles are the active component, while a mechanism involving surface adsorbed species is proposed in which methanol and acetic acid are formed via parallel pathways
The partial oxidation of methane to methanol has been a goal of heterogeneous catalysis for many yea...
The selective oxidation of methane, which is the primary component of natural gas, isone of the most...
The potential of supported gold catalysts for the selective gas-phase oxidation of methane to methan...
The oxidation of methane, the main component of natural gas, to selectively form oxygenated chemical...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Conspectus Methane represents one of the most abundant carbon sources for fuel or chemical productio...
The oxidation of methane using molecular oxygen as the terminal oxidant, over a Au/ZSM-5 catalyst, h...
ConspectusMethane represents one of the most abundant carbon sources for fuel or chemical production...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
In this study we show that using gold palladium nanoparticles supported on a commercial aluminosilic...
The selective oxidation of methane to methanol, using H2O2 generated in situ from the elements, has ...
The partial oxidation of methane to methanol has been a goal of heterogeneous catalysis for many yea...
The selective oxidation of methane, which is the primary component of natural gas, isone of the most...
The potential of supported gold catalysts for the selective gas-phase oxidation of methane to methan...
The oxidation of methane, the main component of natural gas, to selectively form oxygenated chemical...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Conspectus Methane represents one of the most abundant carbon sources for fuel or chemical productio...
The oxidation of methane using molecular oxygen as the terminal oxidant, over a Au/ZSM-5 catalyst, h...
ConspectusMethane represents one of the most abundant carbon sources for fuel or chemical production...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
In this study we show that using gold palladium nanoparticles supported on a commercial aluminosilic...
The selective oxidation of methane to methanol, using H2O2 generated in situ from the elements, has ...
The partial oxidation of methane to methanol has been a goal of heterogeneous catalysis for many yea...
The selective oxidation of methane, which is the primary component of natural gas, isone of the most...
The potential of supported gold catalysts for the selective gas-phase oxidation of methane to methan...