The localised surface plasmon resonance in gold nanoparticles can be used as the basis of a refractometric sensor. Usually, this is accomplished by monitoring a shift in wavelength of the resonance peak, a task which requires measurements over a range of wavelengths. Here we investigate a different scheme, in which interrogation of the sensor is carried out at a single wavelength. We have used numerical simulations to estimate the effect that the shape of gold nanoparticles would have on the performance on such sensors. A variety of geometries of gold nanoparticles were investigated, including nano-spheres, nano-rods, nano-triangles, and nano-bowties. The performance of a sensor that operates at a single wavelength is controlled by dT/dn, t...
We present the development of an analytical model that can be used for the rational design of a bios...
In the last two decades, the unusual optical and physical properties of novel metallic nanostructure...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
Localized Surface Plasmon Resonance (LSPR) waves generated by the interaction of light with noble me...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
The refractive index sensing properties of plasmonic resonances in gold nanoparticles (nanorods and ...
In our modern society, we are surrounded by numerous sensors, constantly feeding us information abou...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
Abstract. The theoretical comparison of possible response measurement techniques for a biosensor bas...
Publisher's version.(útgefin grein)Fabrication and sensor application of a simple plasmonic structur...
The advances in nanoscience and nanotechnology in recent decades have renewed the interests in the o...
The frequency of localized surface plasmon resonance (LSPR) displayed by gold nanoparticles (AuNPs) ...
We present the development of an analytical model that can be used for the rational design of a bios...
In the last two decades, the unusual optical and physical properties of novel metallic nanostructure...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
Localized Surface Plasmon Resonance (LSPR) waves generated by the interaction of light with noble me...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
A novel localized surface plasmon resonance (LSPR) sensor that differentiates between background ref...
The refractive index sensing properties of plasmonic resonances in gold nanoparticles (nanorods and ...
In our modern society, we are surrounded by numerous sensors, constantly feeding us information abou...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...
Abstract. The theoretical comparison of possible response measurement techniques for a biosensor bas...
Publisher's version.(útgefin grein)Fabrication and sensor application of a simple plasmonic structur...
The advances in nanoscience and nanotechnology in recent decades have renewed the interests in the o...
The frequency of localized surface plasmon resonance (LSPR) displayed by gold nanoparticles (AuNPs) ...
We present the development of an analytical model that can be used for the rational design of a bios...
In the last two decades, the unusual optical and physical properties of novel metallic nanostructure...
In this study we investigate and exploit, for optical sensing, the surface plasmon excitation in gol...