Excitation of localized surface plasmon resonances (LSPR) in metallic nanostructures enables efficient absorption and spatial confinement of light energy. The plasmon excitations, however, decay rapidly into heat; this is a major problem in the effective utilization of plasmonic nanostructures for nanoscale energy conversion and optoelectronic device applications. The decay of plasmon excitations involves the generation of energetic hot carriers before the eventual thermalization. These energetic carriers, if suitably extracted before thermalization, can drive chemical reactions and, in conjunction with semiconductors, enable nanoscale photochemical or photovoltaic energy conversion. This chapter discusses the theory of hot carrier generati...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice finding c...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
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...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Hot carrier generation in metallic nanostructures offers a potential route to circumventing thermody...
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 collective oscillation of conduction band electrons in metal nanostructures, known as the locali...
The paper reviews physical concepts related to the collective dynamics of plasmon excitations in met...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice finding c...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
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...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
Extraordinary light matter interaction on the surface of metallic nanostructures can excite surface ...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Hot carrier generation in metallic nanostructures offers a potential route to circumventing thermody...
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 collective oscillation of conduction band electrons in metal nanostructures, known as the locali...
The paper reviews physical concepts related to the collective dynamics of plasmon excitations in met...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice finding c...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...