International audienceRaspberry-like nano-objects made of large plasmonic satellites (>10 nm) covering a central dielectric particle have many potential applications as photonic materials, superlenses and (bio-) sensors, but their synthesis remains challenging. Herein, we show how to build stable and robust raspberry-like nano-systems with close-packed satellites, by combining monodisperse silica particles (80 or 100 nm diameter) and oppositely charged noble metal nanoparticles (Au or Ag) with well-defined sizes (10-50 nm). The spectral characteristics of their associated plasmonic resonances (wavelength, linewidth, extinction cross-section) and the electromagnetic coupling between satellites were observed using the spatial modulation spect...
Controlled synthesis of metal nanoparticles is an important area of study because of the unique size...
The assembly of noble metal nanoparticles offers an appealing means to control and enhance the plasm...
We report on the surface-enhanced Raman scattering (SERS) efficiency of self-organized arrays of Au ...
Raspberry-like nano-objects made of large plasmonic satellites (>10 nm) covering a central dielectri...
We present a bottom-up assembly route for a large-scale organization of plasmonic nanoparticles (NPs...
The optical properties of sub-100 nm raspberry-like nano-systems composed of highly monodisperse sil...
We report on a robust nanotemplating approach to synthesize plasmonic multilayered core-satellite (M...
Plasmonic Ag core–satellite nanostructures were synthesized by utilizing the ultrathin silica shell ...
We report a synthetic approach to produce raspberry-like plasmonic nanostructures with unusually str...
Gold nanostars display strong electromagnetic field enhancement at their tips, and tip plasmon reson...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
A full-interaction electromagnetic approach is applied to interpret the local- and far-field propert...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The design of colloidal nanostructures as surface-enhanced Raman scattering (SERS) substrates requir...
The morphology of plasmonic nano-assemblies has a direct influence on optical properties, such as lo...
Controlled synthesis of metal nanoparticles is an important area of study because of the unique size...
The assembly of noble metal nanoparticles offers an appealing means to control and enhance the plasm...
We report on the surface-enhanced Raman scattering (SERS) efficiency of self-organized arrays of Au ...
Raspberry-like nano-objects made of large plasmonic satellites (>10 nm) covering a central dielectri...
We present a bottom-up assembly route for a large-scale organization of plasmonic nanoparticles (NPs...
The optical properties of sub-100 nm raspberry-like nano-systems composed of highly monodisperse sil...
We report on a robust nanotemplating approach to synthesize plasmonic multilayered core-satellite (M...
Plasmonic Ag core–satellite nanostructures were synthesized by utilizing the ultrathin silica shell ...
We report a synthetic approach to produce raspberry-like plasmonic nanostructures with unusually str...
Gold nanostars display strong electromagnetic field enhancement at their tips, and tip plasmon reson...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
A full-interaction electromagnetic approach is applied to interpret the local- and far-field propert...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The design of colloidal nanostructures as surface-enhanced Raman scattering (SERS) substrates requir...
The morphology of plasmonic nano-assemblies has a direct influence on optical properties, such as lo...
Controlled synthesis of metal nanoparticles is an important area of study because of the unique size...
The assembly of noble metal nanoparticles offers an appealing means to control and enhance the plasm...
We report on the surface-enhanced Raman scattering (SERS) efficiency of self-organized arrays of Au ...