Nonradiative decay of localized surface plasmons results in the production of hot charge carriers and the generation of heat, both of which can affect the efficiency of plasmon-mediated photoelectrochemical processes. Unfortunately, decoupling the impact of each effect on measured photocurrents is extremely challenging because the relative contribution of the two plasmon decay pathways cannot be controlled or easily measured. Here, we present a methodology for exploring the roles of hot carriers and heat generation on plasmon-mediated photoelectrochemical processes using scanning electrochemical microscopy (SECM). Light is used to drive a redox reaction at a plasmonic substrate, while an ultra-microelectrode tip is positioned close to the s...
International audiencePlasmon-induced photocatalysis can drive photochemical processes with an unpre...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
Direct photoexcitation of charges at a plasmonic metal hotspot produces energetic carriers that are ...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
Plasmonic metal nanostructures can concentrate incident optical fields in nanometer-sized volumes, c...
Light absorption and scattering of plasmonic metal nanoparticles can lead to non-equilibrium charge ...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
The role played by heating in the electrochemical behavior of plasmonic nanostructures under illumin...
Plasmon-mediated chemical reactions (PMCRs) constitute a vibrant research field, advancing such goal...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
Harnessing the energy from hot charge carriers is an emerging research area with the potential to im...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Strong light-absorbing properties allow plasmonic metal nanoparticles to serve as antennas for other...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
Plasmonic effects including near-field coupling, light scattering, guided mode through surface plasm...
International audiencePlasmon-induced photocatalysis can drive photochemical processes with an unpre...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
Direct photoexcitation of charges at a plasmonic metal hotspot produces energetic carriers that are ...
Hot carriers generated from the nonradiative decay of localized surface plasmons are capable of driv...
Plasmonic metal nanostructures can concentrate incident optical fields in nanometer-sized volumes, c...
Light absorption and scattering of plasmonic metal nanoparticles can lead to non-equilibrium charge ...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
The role played by heating in the electrochemical behavior of plasmonic nanostructures under illumin...
Plasmon-mediated chemical reactions (PMCRs) constitute a vibrant research field, advancing such goal...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
Harnessing the energy from hot charge carriers is an emerging research area with the potential to im...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Strong light-absorbing properties allow plasmonic metal nanoparticles to serve as antennas for other...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
Plasmonic effects including near-field coupling, light scattering, guided mode through surface plasm...
International audiencePlasmon-induced photocatalysis can drive photochemical processes with an unpre...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
Direct photoexcitation of charges at a plasmonic metal hotspot produces energetic carriers that are ...