Coupling of the localized surface plasmons between two closely apposed gold nanoparticles (nanoantenna) can cause strong enhancements of fluorescence or Raman signal intensity from molecules in the plasmonic “hot-spot”. Harnessing these properties for practical applications is challenging due to the need to fabricate gold particle arrays with well-defined nanometer spacing and a means of delivering functional molecules to the hot-spot. We report fabrication of billions of plasmon-coupled nanostructures on a single substrate by a combination of colloid lithography and plasma processing. Controlled spacing of the nanoantenna gaps is achieved by taking advantage of the fact that polystyrene particles melt together at their contact point during...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Single molecule detection is limited by the small scattering cross-section of molecules which leads ...
Interrogating individual molecules within bio-membranes is key to deepening our understanding of bio...
Coupling of the localized surface plasmons between two closely apposed gold nanoparticles (nanoanten...
ABSTRACT: Coupling of the localized surface plasmons between two closely apposed gold nanoparticles ...
We demonstrate a strategy for surface-enhanced Raman spectroscopy (SERS) of supported lipid membrane...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
International audienceThis paper explores the enhancement of Raman signals using individual nano-pla...
This paper explores the enhancement of Raman signals using individual nano-plasmonic structures and ...
Plasmonic systems based on particle–film plasmonic couplings have recently attracted great attention...
Plasmonic systems based on particle-film plasmonic couplings have recently attracted great attention...
Super-resolution imaging has provided new insights into nanoscale optics. Plasmonic gold nanotriangl...
We demonstrate the reliable creation of multiple layers of Au nanoparticles in random close-packed a...
Plasmonic nanostructures can focus light far below the diffraction limit, and the nearly thousandfol...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Single molecule detection is limited by the small scattering cross-section of molecules which leads ...
Interrogating individual molecules within bio-membranes is key to deepening our understanding of bio...
Coupling of the localized surface plasmons between two closely apposed gold nanoparticles (nanoanten...
ABSTRACT: Coupling of the localized surface plasmons between two closely apposed gold nanoparticles ...
We demonstrate a strategy for surface-enhanced Raman spectroscopy (SERS) of supported lipid membrane...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
International audienceThis paper explores the enhancement of Raman signals using individual nano-pla...
This paper explores the enhancement of Raman signals using individual nano-plasmonic structures and ...
Plasmonic systems based on particle–film plasmonic couplings have recently attracted great attention...
Plasmonic systems based on particle-film plasmonic couplings have recently attracted great attention...
Super-resolution imaging has provided new insights into nanoscale optics. Plasmonic gold nanotriangl...
We demonstrate the reliable creation of multiple layers of Au nanoparticles in random close-packed a...
Plasmonic nanostructures can focus light far below the diffraction limit, and the nearly thousandfol...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Single molecule detection is limited by the small scattering cross-section of molecules which leads ...
Interrogating individual molecules within bio-membranes is key to deepening our understanding of bio...