The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostructures can give rise to the localization of intense electromagnetic fields at the metal-dielectric interface. These strong fields are exploited in surface enhanced spectroscopies, such as Surface Enhanced Raman Scattering (SERS), for the detection and characterization of molecules at very low concentration. Still, the implementation of SERS-based biosensors requires a high level of reproducibility, combined with cheap and simple fabrication methods. For this purpose, SERS substrates based on self-assembled aggregates of commercial metallic nanoparticles (Nps) can meet all the above requests. Following this line, we report on a combined micro-R...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Metal nanoparticles possess great optical properties, among many others, and are used in multiple ap...
The fabrication and optical characterization of self-assembled arrangements of rough gold nanopartic...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Metal nanoparticles possess great optical properties, among many others, and are used in multiple ap...
The fabrication and optical characterization of self-assembled arrangements of rough gold nanopartic...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
The coherent oscillations of the surface electron gas, known as surface plasmons, in metal nanostruc...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
A study of the Surface Enhanced Raman Scattering (SERS) from micrometric metallic nanoparticle aggre...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Metal nanoparticles possess great optical properties, among many others, and are used in multiple ap...
The fabrication and optical characterization of self-assembled arrangements of rough gold nanopartic...