The conversion of light to electrical and chemical energy has the potential to provide meaningful advances to many aspects of daily life, including the production of energy, water purification, and optical sensing. Recently, plasmonic nanoparticles (PNPs) have been increasingly used in artificial photosynthesis (e.g., water splitting) devices in order to extend the visible light utilization of semiconductors to light energies below their band gap. These nanoparticles absorb light and produce hot electrons and holes that can drive artificial photosynthesis reactions. For n-type semiconductor photoanodes decorated with PNPs, hot charge carriers are separated by a process called hot electron injection (HEI), where hot electrons with sufficient...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice researcher...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
<p>The conversion of light to electrical and chemical energy has the potential to provide meaningful...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
This work exploits the ability of the spark discharge particle generator (SDG) to produce metallic n...
Owing to global warming and fast depleting fossil reserves, the world is currently witnessing an ene...
This work exploits the ability of the spark discharge particle generator (SDG) to produce metallic n...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
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...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice researcher...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
<p>The conversion of light to electrical and chemical energy has the potential to provide meaningful...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
This work exploits the ability of the spark discharge particle generator (SDG) to produce metallic n...
Owing to global warming and fast depleting fossil reserves, the world is currently witnessing an ene...
This work exploits the ability of the spark discharge particle generator (SDG) to produce metallic n...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
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...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
In plasmonic metals, surface plasmon resonance decays and generates hot electrons and hot holes thro...
Surface plasmons provide a pathway to efficiently absorb and confine light in metallic nanostructure...
The use of surface plasmons, charge density oscillations of conduction electrons of metallic nanostr...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
NEWS COVERAGE: A news release based on this journal publication is available online: Rice researcher...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...