The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostructures, to boost the efficiency of light-harvesting devices through increased light-matter interactions could drastically alter how sunlight is converted into electricity or fuels. These excitations can decay directly into energetic electron–hole pairs, useful for photocurrent generation or photocatalysis. However, the mechanisms behind plasmonic carrier generation remain poorly understood. Here we use nanowire-based hot-carrier devices on a wide-bandgap semiconductor to show that plasmonic carrier generation is proportional to internal field-intensity enhancement and occurs independently of bulk absorption. We also show that plasmon-induced...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice finding c...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
Harnessing photoexcited "hot" carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited "hot" carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Hot carrier generation in metallic nanostructures offers a potential route to circumventing thermody...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice finding c...
Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficie...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
Harnessing photoexcited "hot" carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited "hot" carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Hot carrier generation in metallic nanostructures offers a potential route to circumventing thermody...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Harnessing photoexcited “hot” carriers in metallic nanostructures could define a new phase of non-eq...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...