Plasmonic systems based on particle-film plasmonic couplings have recently attracted great attention because of the significantly enhanced electric field at the particle-film gaps. Here, we introduce a hybrid plasmonic architecture utilizing combined plasmonic effects of particle-film gap plasmons and silver film over nanosphere (AgFON) substrates. When gold nanoparticles (AuNPs) are assembled on AgFON substrates with controllable particle-film gap distances, the AuNP-AgFON system supports multiple plasmonic couplings from interparticle, particle-film, and crevice gaps, resulting in a huge surface-enhanced Raman spectroscopy (SERS) effect. We show that the periodicity of AgFON substrates and the particle-film gaps greatly affects the surfac...
Engineering of plasmon resonances is important for a variety of applications, including but not limi...
The aim of this thesis is to design plasmonic nano-gaps capable of detecting materials down to suffi...
Optical excitation of coupled plasmonic nanoparticles supports intense localized electromagnetic \u2...
Plasmonic systems based on particle–film plasmonic couplings have recently attracted great attention...
Surface Enhanced Raman Scattering (SERS) yields gigantic enhancement of inherently weak Raman signal...
The controlled deposition of nanoparticles onto 3-D nanostructured films is still facing challenges ...
Plasmonic systems based on metal nanoparticles on a metal film have generated great interest for sur...
When semiconducting nanostructures are combined with noble metals, the surface plasmons of the noble...
To enhance the interaction between electromagnetic fields and reduce photoluminescence (PL) lifetime...
Surface plasmons (SPs) have generated a tremendous amount of interest in recent decades due to their...
Surface plasmons (SPs) have generated a tremendous amount of interest in recent decades due to their...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
Engineering of plasmon resonances is important for a variety of applications, including but not limi...
The aim of this thesis is to design plasmonic nano-gaps capable of detecting materials down to suffi...
Optical excitation of coupled plasmonic nanoparticles supports intense localized electromagnetic \u2...
Plasmonic systems based on particle–film plasmonic couplings have recently attracted great attention...
Surface Enhanced Raman Scattering (SERS) yields gigantic enhancement of inherently weak Raman signal...
The controlled deposition of nanoparticles onto 3-D nanostructured films is still facing challenges ...
Plasmonic systems based on metal nanoparticles on a metal film have generated great interest for sur...
When semiconducting nanostructures are combined with noble metals, the surface plasmons of the noble...
To enhance the interaction between electromagnetic fields and reduce photoluminescence (PL) lifetime...
Surface plasmons (SPs) have generated a tremendous amount of interest in recent decades due to their...
Surface plasmons (SPs) have generated a tremendous amount of interest in recent decades due to their...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
Engineering of plasmon resonances is important for a variety of applications, including but not limi...
The aim of this thesis is to design plasmonic nano-gaps capable of detecting materials down to suffi...
Optical excitation of coupled plasmonic nanoparticles supports intense localized electromagnetic \u2...