Plasmon-induced carrier transfer at metallic nanoparticle/semiconductor heterojunctions has received great attention because of its tremendous potential in applications, such as photocatalysis and photoelectric and energy conversion. The interfacial structure of the heterojunction is known to play an important role in charge transfer as well as the subsequent chemical reactions. Here, we studied the Au nanoparticle (Au-NP)-loaded (100)-, (110)-, and (111)-oriented single-crystalline strontium titanate (STO) as a model to investigate the effects of interfacial structure on the plasmon-induced charge separation between the metallic nanoparticles and semiconductors. Via photoelectrochemical characterizations, we found that the efficiency of th...
International audiencePlasmonic nanostructures have played a key role in extending the activity of p...
International audienceThe use of semiconductors for hydrogen production through water splitting repr...
Visible light photocatalytic activity of the plasmonic gold-zinc oxide (Au-ZnO) nanorods (NRs) is in...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
Surface plasmons (SPs) are able to promote chemical reactions through the participation of the energ...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
Plasmonic photocatalysis via hot charge carriers suffers from their short lifetime compared with the...
Solar water splitting with metal oxide semiconductors constitutes a promising approach to the conver...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
We have demonstrated plasmonic photocurrent generation from visible to near-infrared wavelengths wit...
The performance of plasmonic Au nanostructure/metal oxide heterointerface shows great promise in enh...
Interfacial charge transfer at the heterogeneous surface of semiconductor nanoparticles is a fundame...
The relatively recent discovery that plasmonic nanoparticles generate energetic electron-hole pairs ...
International audiencePlasmonic nanostructures have played a key role in extending the activity of p...
International audienceThe use of semiconductors for hydrogen production through water splitting repr...
Visible light photocatalytic activity of the plasmonic gold-zinc oxide (Au-ZnO) nanorods (NRs) is in...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
Surface plasmons (SPs) are able to promote chemical reactions through the participation of the energ...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
Plasmonic photocatalysis via hot charge carriers suffers from their short lifetime compared with the...
Solar water splitting with metal oxide semiconductors constitutes a promising approach to the conver...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
We have demonstrated plasmonic photocurrent generation from visible to near-infrared wavelengths wit...
The performance of plasmonic Au nanostructure/metal oxide heterointerface shows great promise in enh...
Interfacial charge transfer at the heterogeneous surface of semiconductor nanoparticles is a fundame...
The relatively recent discovery that plasmonic nanoparticles generate energetic electron-hole pairs ...
International audiencePlasmonic nanostructures have played a key role in extending the activity of p...
International audienceThe use of semiconductors for hydrogen production through water splitting repr...
Visible light photocatalytic activity of the plasmonic gold-zinc oxide (Au-ZnO) nanorods (NRs) is in...