More sustainable solutions are needed to produce chemicals and fuels, mainly to face rising demands and mitigate climate change. Light, as a reagent, has emerged as a route to activate small molecules, e.g., H2O, CO2, N2, and make complex chemicals in a process called photocatalysis. Several photosystems have been proposed, with plasmonic technology emerging as one the most promising technologies due to its high optical absorption and hot-carrier formation. However, the lifetime of hot carriers is unsuitable for direct use; therefore, they are normally coupled with suitable charge-accepting materials, such as semiconductors. Herein, a system is reported consisting of Au supported in p-Cu2O. The combination of p-Cu2O intrinsic photoactivity ...
International audienceThe induction of chemical processes by plasmonic systems is a rapidly growing ...
Strong light-absorbing properties allow plasmonic metal nanoparticles to serve as antennas for other...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
The intrinsic correlation between an enhancement of catalytic activity and the flow of hot electrons...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
In recent years, there has been a renewed interest in the harnessing and conversion of solar energy ...
International audiencePlasmonic nanostructures have played a key role in extending the activity of p...
International audiencePlasmon-induced photocatalysis can drive photochemical processes with an unpre...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
Hot electrons generated in metal nanoparticles can drive chemical reactions and selectively deposit ...
Despite its chemical stability, Au can significantly augment the catalytic properties of heterogeneo...
One of the most exciting new developments in the plasmonic nanomaterials field is the discovery of t...
Ultrathin Cu layers (∼2 atomic layers) have been selectively formed on the Au surfaces of Au nanopar...
Plasmonic effects including near-field coupling, light scattering, guided mode through surface plasm...
International audienceThe induction of chemical processes by plasmonic systems is a rapidly growing ...
Strong light-absorbing properties allow plasmonic metal nanoparticles to serve as antennas for other...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
The intrinsic correlation between an enhancement of catalytic activity and the flow of hot electrons...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
In recent years, there has been a renewed interest in the harnessing and conversion of solar energy ...
International audiencePlasmonic nanostructures have played a key role in extending the activity of p...
International audiencePlasmon-induced photocatalysis can drive photochemical processes with an unpre...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
Hot electrons generated in metal nanoparticles can drive chemical reactions and selectively deposit ...
Despite its chemical stability, Au can significantly augment the catalytic properties of heterogeneo...
One of the most exciting new developments in the plasmonic nanomaterials field is the discovery of t...
Ultrathin Cu layers (∼2 atomic layers) have been selectively formed on the Au surfaces of Au nanopar...
Plasmonic effects including near-field coupling, light scattering, guided mode through surface plasm...
International audienceThe induction of chemical processes by plasmonic systems is a rapidly growing ...
Strong light-absorbing properties allow plasmonic metal nanoparticles to serve as antennas for other...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...