AbstractPhotocatalytic oxidative coupling of methane (OCM) produces C2 molecules that can be used as building blocks for synthesis of fuels and chemicals. However, the yield rate and the selectivity of C2 products are still moderate due to the stable nature of methane molecules. Here we develop a Au nanocluster-loaded TiO2 photocatalyst by a sputtering approach, achieving a high methane conversion rate of 1.1 mmol h−1, C2 selectivity of ~90% and apparent quantum efficiency of 10.3 ± 0.6%. The high C2/C2+ yield rate is on the same order of magnitude as the benchmark thermal catalysts in OCM processes operated at high temperature (>680 °C). Au nanoparticles are shown to prolong TiO2 photoelectron lifetimes by a factor of 66 for O2 reductio...
Photocatalytic non-oxidative coupling of methane (PNOCM) is a mild and cost-effective method for the...
Direct and efficient oxidation of methane to methanol and the related liquid oxygenates provides a p...
Engineering of advanced semiconductor photocatalysts for CO2 conversion to solar fuels is a promisin...
Direct non-oxidative coupling of methane (NOCM) is an effective way to produce hydrocarbons. However...
Methane activation by photocatalysis is one of the promising sustainable technologies for chemical s...
Direct methane conversion to value-added chemicals through photocatalysis is promising but still has...
Photocatalytic methane combustion is a promising strategy to eliminate methane at ambient condition,...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Titanate nanostructures are of great interest for catalytic applications because their high surface ...
Oxidative coupling of methane (OCM) is considered one of the most promising catalytic technologies t...
Photocatalytic methane combustion is a promising strategy to eliminate methane at ambient condition,...
Direct and highly efficient conversion of methane to methanol under mild conditions still remains a ...
The high activation barrier of the C–H bond in methane, combined with the high propensity of methano...
Photocatalytic non-oxidative coupling of methane (PNOCM) is a mild and cost-effective method for the...
Direct and efficient oxidation of methane to methanol and the related liquid oxygenates provides a p...
Engineering of advanced semiconductor photocatalysts for CO2 conversion to solar fuels is a promisin...
Direct non-oxidative coupling of methane (NOCM) is an effective way to produce hydrocarbons. However...
Methane activation by photocatalysis is one of the promising sustainable technologies for chemical s...
Direct methane conversion to value-added chemicals through photocatalysis is promising but still has...
Photocatalytic methane combustion is a promising strategy to eliminate methane at ambient condition,...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Titanate nanostructures are of great interest for catalytic applications because their high surface ...
Oxidative coupling of methane (OCM) is considered one of the most promising catalytic technologies t...
Photocatalytic methane combustion is a promising strategy to eliminate methane at ambient condition,...
Direct and highly efficient conversion of methane to methanol under mild conditions still remains a ...
The high activation barrier of the C–H bond in methane, combined with the high propensity of methano...
Photocatalytic non-oxidative coupling of methane (PNOCM) is a mild and cost-effective method for the...
Direct and efficient oxidation of methane to methanol and the related liquid oxygenates provides a p...
Engineering of advanced semiconductor photocatalysts for CO2 conversion to solar fuels is a promisin...