Plasmon resonance modulation with an external magnetic field (magnetoplasmonics) represents a promising route for the improvement of the sensitivity of plasmon-based refractometric sensing. To this purpose, an accurate material choice is needed to realize hybrid nanostructures with an improved magnetoplasmonic response. In this work, we prepared core@shell nanostructures made of an 8 nm Au core surrounded by an ultrathin iron oxide shell (≤1 nm). The presence of the iron oxide shell was found to significantly enhance the magneto-optical response of the noble metal in the localized surface plasmon region, compared with uncoated Au nanoparticles. With the support of an analytical model, we ascribed the origin of the enhancement to the shell-i...
We present here a theoretical study that shows how the use of hybrid magnetoplasmonic crystals compr...
The optical and magneto-optical (MO) properties of magneto-plasmonic nanocomposite films made up of ...
Au@Cu<sub>2</sub>O core–shell nanostructures are fabricated to have a plasmon enhancement effect usi...
Plasmon resonance modulation with an external magnetic field (magnetoplasmonics) represents a promis...
Gold-coated iron oxide core-shell nanoparticles (IO-Au NPs) are of interest for use in numerous biom...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
AbstractMagnetoplasmonics based on Composite nanostructure, has been used in sensing, optical device...
We report a method for the fabrication of relatively uniform sandwich-like core-interlayer-shell nan...
The relationship between composition and plasmonic properties in noble metal nanoalloys is still lar...
Metallic nanostructures supporting Localized Surface Plasmon Resonances (LSPR) are characterized by ...
The optical properties of several iron oxide@noble metal core-shell nanohybrids (NHs) have been syst...
Subwavelength composite materials constitute an interesting path towards the development of material...
Functional properties tunability prospect of multi-layered and multi-metallic nanoparticles with res...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
International audiencePlasmon resonances of noble metal nanoparticles are used to enhance light-matt...
We present here a theoretical study that shows how the use of hybrid magnetoplasmonic crystals compr...
The optical and magneto-optical (MO) properties of magneto-plasmonic nanocomposite films made up of ...
Au@Cu<sub>2</sub>O core–shell nanostructures are fabricated to have a plasmon enhancement effect usi...
Plasmon resonance modulation with an external magnetic field (magnetoplasmonics) represents a promis...
Gold-coated iron oxide core-shell nanoparticles (IO-Au NPs) are of interest for use in numerous biom...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
AbstractMagnetoplasmonics based on Composite nanostructure, has been used in sensing, optical device...
We report a method for the fabrication of relatively uniform sandwich-like core-interlayer-shell nan...
The relationship between composition and plasmonic properties in noble metal nanoalloys is still lar...
Metallic nanostructures supporting Localized Surface Plasmon Resonances (LSPR) are characterized by ...
The optical properties of several iron oxide@noble metal core-shell nanohybrids (NHs) have been syst...
Subwavelength composite materials constitute an interesting path towards the development of material...
Functional properties tunability prospect of multi-layered and multi-metallic nanoparticles with res...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
International audiencePlasmon resonances of noble metal nanoparticles are used to enhance light-matt...
We present here a theoretical study that shows how the use of hybrid magnetoplasmonic crystals compr...
The optical and magneto-optical (MO) properties of magneto-plasmonic nanocomposite films made up of ...
Au@Cu<sub>2</sub>O core–shell nanostructures are fabricated to have a plasmon enhancement effect usi...