The plasmon-exciton interaction mechanisms in CdS–Au colloidal quantum-confined plexcitonic nanorod heterostructures have been studied by transient absorption spectroscopy. Optical excitation of plasmons in the Au tip leads to hot electron injection into the CdS rod with a quantum yield of ∼2.75%. This finding suggests the possibility of further optimization of plasmon-induced hot electron injection efficiency through controlling the size and shape of the plasmonic and excitonic domains for potential light harvesting applications
Plasmonics is a rapidly developing field at the boundary of fundamental sciences and device engineer...
Composite nanostructures of metal core/semiconductor shell (Au/CdS) configuration were prepared usin...
The ability of plasmonic nanostructures to harvest photons beyond the traditional band-to-band photo...
The superior optical extinction characteristics of noble metal nanoparticles have long been consider...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
The nature of exciton-plasmon interactions in Au-tipped CdS nanorods has been investigated using fem...
For semiconductors photosensitized with organic dyes or quantum dots, transferred electrons are usua...
Plasmonic metals can excite charge carriers in semiconductors through plasmon-induced resonance ener...
Hybrid plasmonic-semiconductor assemblies are receiving considerable attention due to the possibilit...
Combining metal and semiconducting nanomaterials into one single nanocrystal, metal–semiconducting n...
The plasmon resonance of small-diameter metal nanoparticles has a unique decay character, as it prod...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
An atomistic description is presented of the excited state dynamics in spherical Au/CdS core/shell n...
Plasmonic nanostructures can induce a number of interesting responses in devices. Here we show that ...
This work provides a mechanistic understanding of hot-electron-based catalysis on Au nanoparticles (...
Plasmonics is a rapidly developing field at the boundary of fundamental sciences and device engineer...
Composite nanostructures of metal core/semiconductor shell (Au/CdS) configuration were prepared usin...
The ability of plasmonic nanostructures to harvest photons beyond the traditional band-to-band photo...
The superior optical extinction characteristics of noble metal nanoparticles have long been consider...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
The nature of exciton-plasmon interactions in Au-tipped CdS nanorods has been investigated using fem...
For semiconductors photosensitized with organic dyes or quantum dots, transferred electrons are usua...
Plasmonic metals can excite charge carriers in semiconductors through plasmon-induced resonance ener...
Hybrid plasmonic-semiconductor assemblies are receiving considerable attention due to the possibilit...
Combining metal and semiconducting nanomaterials into one single nanocrystal, metal–semiconducting n...
The plasmon resonance of small-diameter metal nanoparticles has a unique decay character, as it prod...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
An atomistic description is presented of the excited state dynamics in spherical Au/CdS core/shell n...
Plasmonic nanostructures can induce a number of interesting responses in devices. Here we show that ...
This work provides a mechanistic understanding of hot-electron-based catalysis on Au nanoparticles (...
Plasmonics is a rapidly developing field at the boundary of fundamental sciences and device engineer...
Composite nanostructures of metal core/semiconductor shell (Au/CdS) configuration were prepared usin...
The ability of plasmonic nanostructures to harvest photons beyond the traditional band-to-band photo...