The electromagnetic field enhancement factors by gap plasmons between two spherical metal particles are calculated for hydrogen-absorbing transition metals Pd, Ti, and Ni, and reference noble metals Au, Ag, and Cu, in air, H2, or vacuum, and H2O. The dependence of the field enhancement factors on the metal species, the field wavelength, the electric field polarization, the separation of the two metal particles, and the observing location is systematically investigated. Field enhancement is observed significantly large in the gap of two metal particles and sensitive to the particle separation, but insensitive to the position in the gap, indicating a geometric flexibility for applications. The spectral peak field enhancement factors for Pd, T...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
Hydride-forming metal nanoparticles sustaining localized surface plasmon resonance have emerged as p...
The plasmonic enhancement of electromagnetic field energy density at the sharp tips of nanoparticles...
The plasmonic enhancement of electromagnetic field energy density around planar surfaces of hydrogen...
When light interacts with metallic nanoparticles smaller than its wavelength it can excite a collect...
Combination of catalytically active transition metals and surface plasmons offers a promising way to...
Metal nanostructures act as powerful optical antennas1, 2 because collective modes of the electron f...
A small gap between metal nanoparticles provides a strong local field enhancement when illuminated w...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
Surface plasmons are known for their ability to provide large field enhancement at the interface bet...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
Nanoplasmonics concerns the interactions between light and metal nanoparticles. In this thesis nanop...
In this work we have developed full Mie theory for spherical core-double shell NPs, considering the ...
ubwavelength nanostructures made of noble metals can sustain localized surface plasmons (LSPs)- the ...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
Hydride-forming metal nanoparticles sustaining localized surface plasmon resonance have emerged as p...
The plasmonic enhancement of electromagnetic field energy density at the sharp tips of nanoparticles...
The plasmonic enhancement of electromagnetic field energy density around planar surfaces of hydrogen...
When light interacts with metallic nanoparticles smaller than its wavelength it can excite a collect...
Combination of catalytically active transition metals and surface plasmons offers a promising way to...
Metal nanostructures act as powerful optical antennas1, 2 because collective modes of the electron f...
A small gap between metal nanoparticles provides a strong local field enhancement when illuminated w...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
Surface plasmons are known for their ability to provide large field enhancement at the interface bet...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
Nanoplasmonics concerns the interactions between light and metal nanoparticles. In this thesis nanop...
In this work we have developed full Mie theory for spherical core-double shell NPs, considering the ...
ubwavelength nanostructures made of noble metals can sustain localized surface plasmons (LSPs)- the ...
We used dark field spectroscopy to monitor the dissociation of hydrogen on single gold nanoparticles...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
Hydride-forming metal nanoparticles sustaining localized surface plasmon resonance have emerged as p...