Surface plasmons (SPs) are able to promote chemical reactions through the participation of the energetic charge carriers produced following plasmons decay. Using p-aminothiophenol (PATP) as a probe molecule, we used surface-enhanced Raman spectroscopy to follow the progress of its transformation, in situ, to investigate systematically the role of hot electrons and holes. The energetic carrier mediated PATP oxidation was found to occur even in the absence of oxygen, and was greatly influenced by the interface region near the gold surface. The observed reaction, which occurred efficiently on Au@TiO2 nanostructures, did not happen on bare gold nanoparticles (NPs) or core–shell nanostructures when a silicon oxide layer blocked access to the gol...
Illumination of noble metal nanostructures by electromagnetic radiation induces coherent oscillation...
Hot electrons generated in metal nanoparticles can drive chemical reactions and selectively deposit ...
Gold nanoparticles have been extensively investigated due their chemical and physical properties, wh...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
Surface plasmons (SPs) originating from the collective oscillation of conduction electrons in nanost...
Plasmon-induced carrier transfer at metallic nanoparticle/semiconductor heterojunctions has received...
Plasmon-induced oxidation has conventionally been attributed to the transfer of plasmonic hot holes....
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
The mechanism of the plasmon-catalyzed reaction of <i>p</i>-aminothiophenol (PATP) to 4,4′-dimercapt...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Surface plasmon resonance (SPR) of noble metal nanoparticles (NPs) provides a pathway to efficiently...
The surface plasmon catalytic selective aerobic oxidation of aromatic amines to aromatic azo compoun...
Hot carriers electrons and holes generated from the decay of localized surface plasmon resonances...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
The plasmonic electron oscillations in optically excited metallic nanoparticles result in surface co...
Illumination of noble metal nanostructures by electromagnetic radiation induces coherent oscillation...
Hot electrons generated in metal nanoparticles can drive chemical reactions and selectively deposit ...
Gold nanoparticles have been extensively investigated due their chemical and physical properties, wh...
Plasmonic photocatalysis, stemming from the effective light absorbance and confinement of surface pl...
Surface plasmons (SPs) originating from the collective oscillation of conduction electrons in nanost...
Plasmon-induced carrier transfer at metallic nanoparticle/semiconductor heterojunctions has received...
Plasmon-induced oxidation has conventionally been attributed to the transfer of plasmonic hot holes....
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
The mechanism of the plasmon-catalyzed reaction of <i>p</i>-aminothiophenol (PATP) to 4,4′-dimercapt...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Surface plasmon resonance (SPR) of noble metal nanoparticles (NPs) provides a pathway to efficiently...
The surface plasmon catalytic selective aerobic oxidation of aromatic amines to aromatic azo compoun...
Hot carriers electrons and holes generated from the decay of localized surface plasmon resonances...
The use of hot carriers generated from the decay of localized surface plasmon resonance in noble met...
The plasmonic electron oscillations in optically excited metallic nanoparticles result in surface co...
Illumination of noble metal nanostructures by electromagnetic radiation induces coherent oscillation...
Hot electrons generated in metal nanoparticles can drive chemical reactions and selectively deposit ...
Gold nanoparticles have been extensively investigated due their chemical and physical properties, wh...