The high sensitivity of localized surface plasmon resonance sensors to the local refractive index allows for the detection of single-molecule binding events. Though binding events of single objects can be detected by their induced plasmon shift, the broad distribution of observed shifts remains poorly understood. Here, we perform a single-particle study wherein single nanospheres bind to a gold nanorod, and relate the observed plasmon shift to the binding location using correlative microscopy. To achieve this we combine atomic force microscopy to determine the binding location, and single-particle spectroscopy to determine the corresponding plasmon shift. As expected, we find a larger plasmon shift for nanospheres binding at the tip of a ro...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The adoption of plasmonic nanomaterials in optical sensors, coupled with the advances in detection t...
Single-particle (SP) sensing technology provides a methodology to explore the biochemical process in...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Single metal nanoparticles are attractive biomolecular sensors. Binding of analyte to a functional p...
Anomalies are investigated that exist between many long-standing theoretical models of the optical b...
The sensitivity of a surface plasmon to the dielectric environment makes it a viable tool in detecti...
The plasmonic nanoparticle sensitivity, sensing volume, and the signal-to-noise ratio are strongly d...
AbstractLocalized Surface Plasmon Resonance: Single Particle to Ensemble Binding Measurements.byJami...
The resonance conditions of localized surface plasmon resonances (LSPRs) can be perturbed in any num...
cited By 26International audienceWe perform a theoretical investigation of individual and coupled go...
The plasmonic nanoparticle sensitivity, sensing volume, and the signal-to-noise ratio are strongly d...
Single plasmonic nanoparticles can potentially serve as optical sensors for detecting local refracti...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The adoption of plasmonic nanomaterials in optical sensors, coupled with the advances in detection t...
Single-particle (SP) sensing technology provides a methodology to explore the biochemical process in...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Single metal nanoparticles are attractive biomolecular sensors. Binding of analyte to a functional p...
Anomalies are investigated that exist between many long-standing theoretical models of the optical b...
The sensitivity of a surface plasmon to the dielectric environment makes it a viable tool in detecti...
The plasmonic nanoparticle sensitivity, sensing volume, and the signal-to-noise ratio are strongly d...
AbstractLocalized Surface Plasmon Resonance: Single Particle to Ensemble Binding Measurements.byJami...
The resonance conditions of localized surface plasmon resonances (LSPRs) can be perturbed in any num...
cited By 26International audienceWe perform a theoretical investigation of individual and coupled go...
The plasmonic nanoparticle sensitivity, sensing volume, and the signal-to-noise ratio are strongly d...
Single plasmonic nanoparticles can potentially serve as optical sensors for detecting local refracti...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The adoption of plasmonic nanomaterials in optical sensors, coupled with the advances in detection t...
Single-particle (SP) sensing technology provides a methodology to explore the biochemical process in...