Commercial P25 modified by AuCu alloy nanoparticles as thin film exhibits, for CO2 reduction by water under sun simulated light, a rate of methane production above 2000 mu mol (g of photocatalyst)(-1) h(1). Although evolution of hydrogen is observed and O-2 and ethane detected, the selectivity of conduction band electrons for methane formation is almost complete, about 97%. This photocatalytic behavior is completely different from that measured for Au/P25 (hydrogen evolution) and Cu/P25 (lower activity, but similar methane selectivity). Characterization by TEM, XPS, and UVvis spectroscopy shows that Au and Cu are alloyed in the nanoparticles. FT-IR spectroscopy and chemical analysis have allowed one to detect on the photocatalyst surface th...
Global economic development intensifies the consumption of fossil fuels which results in increase of...
Gold nanoparticles supported on P25 TiO2 act as highly efficient photocatalysts for promoting the si...
Au-MxOy (M_Ag, Cu, Ni) nanoparticles supported on TiO2?P25 were prepared by the deposition?precipita...
Commercial P25 modified by Au–Cu alloy nanoparticles as thin film exhibits, for CO<sub>2</sub> reduc...
Although CO2 photoreduction to formaldehyde and methanol in purified water was first reported in 197...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
The solar-powered production of value-added chemicals from carbon dioxide (CO2) and water (H2O) is a...
The solar-powered production of value-added chemicals from carbon dioxide (CO2) and water (H2O) is a...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
Au/TiO2, Au0.75Cu0.25/TiO2, Au0.5Cu0.5/TiO2 and Au0.25Cu0.75/TiO2 photocatalysts prepared from pre-f...
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...
Gold nanoparticles supported on P25 TiO2 act as highly efficient photocatalysts for promoting the si...
Au-MxOy (M_Ag, Cu, Ni) nanoparticles supported on TiO2?P25 were prepared by the deposition?precipita...
Commercial P25 modified by Au–Cu alloy nanoparticles as thin film exhibits, for CO<sub>2</sub> reduc...
Although CO2 photoreduction to formaldehyde and methanol in purified water was first reported in 197...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
The solar-powered production of value-added chemicals from carbon dioxide (CO2) and water (H2O) is a...
The solar-powered production of value-added chemicals from carbon dioxide (CO2) and water (H2O) is a...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
With the aim of developing sustainable and economic catalysts, Au doped-transition metals have gaine...
Au/TiO2, Au0.75Cu0.25/TiO2, Au0.5Cu0.5/TiO2 and Au0.25Cu0.75/TiO2 photocatalysts prepared from pre-f...
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...
Gold nanoparticles supported on P25 TiO2 act as highly efficient photocatalysts for promoting the si...
Au-MxOy (M_Ag, Cu, Ni) nanoparticles supported on TiO2?P25 were prepared by the deposition?precipita...