Solar-to-chemical conversion via photocatalysis is of paramount importance for a sustainable future. Thus, investigating the synergistic effects promoted by light in photocatalytic reactions is crucial. The tandem oxidative coupling of alcohols and amines is an attractive route to synthesize imines. Here, we unravel the performance and underlying reaction pathway in the visible-light-driven tandem oxidative coupling of benzyl alcohol and aniline employing Au/CeO2 nanorods as catalysts. We propose an alternative reaction pathway for this transformation that leads to improved efficiencies relative to individual CeO2 nanorods, in which the localized surface plasmon resonance (LSPR) excitation in Au nanoparticles (NPs) plays an important role. ...
More sustainable solutions are needed to produce chemicals and fuels, mainly to face rising demands ...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
Solar-to-chemical conversion via photocatalysis is of paramount importance for a sustainable future....
Solar-to-chemical conversion via photocatalysis is of paramount importance for a sustainable future....
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
Au nanoparticles supported on CeO2 have been prepared and investigated as photocatalysts for the pho...
Light driven excitation of gold nanoparticles (GNPs) has emerged as a potential strategy to generate...
Localized surface plasmons generated on metallic nanostructures can be used to accelerate molecular ...
While direct hot-carrier transfer can increase photocatalytic activity, it is difficult to discern e...
Hot carrier generation by light in various semiconductors and metallic nanostructures is important f...
Surface plasmons (SPs) originating from the collective oscillation of conduction electrons in nanost...
International audienceThe use of light as primary energy source in chemical transformations is one m...
ABSTRACT: Heterogeneous catalysis is of paramount importance in chemistry and energy applications. C...
Localized surface plasmon resonance (LSPR) of plasmonic nanoparticles and nanostructures has attract...
More sustainable solutions are needed to produce chemicals and fuels, mainly to face rising demands ...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
Solar-to-chemical conversion via photocatalysis is of paramount importance for a sustainable future....
Solar-to-chemical conversion via photocatalysis is of paramount importance for a sustainable future....
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
Au nanoparticles supported on CeO2 have been prepared and investigated as photocatalysts for the pho...
Light driven excitation of gold nanoparticles (GNPs) has emerged as a potential strategy to generate...
Localized surface plasmons generated on metallic nanostructures can be used to accelerate molecular ...
While direct hot-carrier transfer can increase photocatalytic activity, it is difficult to discern e...
Hot carrier generation by light in various semiconductors and metallic nanostructures is important f...
Surface plasmons (SPs) originating from the collective oscillation of conduction electrons in nanost...
International audienceThe use of light as primary energy source in chemical transformations is one m...
ABSTRACT: Heterogeneous catalysis is of paramount importance in chemistry and energy applications. C...
Localized surface plasmon resonance (LSPR) of plasmonic nanoparticles and nanostructures has attract...
More sustainable solutions are needed to produce chemicals and fuels, mainly to face rising demands ...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...