The last few years have seen a growing interest in the ability of metallic nanoparticles (MNPs) to control temperature at the nanoscale. Under a suitable optical radiation, MNPs feature an enhanced light absorption/scattering, thus turning into an ideal nano-source of heat, remotely controllable by means of light. In this framework, we report our recent efforts on modeling and characterizing the photo-thermal effects observed in gold nanoparticles (GNPs) dispersed in thermotropic Liquid Crystals (LCs). Photo-induced temperature variations in GNPs dispersed in Nematic LCs (NLCs) have been studied by implementing an ad hoc theoretical model based on the thermal heating equation applied to an anisotropic medium. Theoretical predictions have be...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
We experimentally demonstrate that the plasmonic heat delivered by a single layer of homogeneously d...
The temperature distribution throughout arrays of illuminated metal nanoparticles is investigated nu...
The last few years have seen a growing interest in the ability of metallic nanoparticles (MNPs) to c...
Thermo-sensitive liquid crystals may result, for some aspects, good host materials for plasmonic nan...
The photo-induced heating from a layer of uniformly distributed gold nanoparticles has been characte...
It was shown that irradiation of a nematic liquid crystal doped with metal nanoparticles in the visi...
Nanomaterials represent a class of materials based on nanoscale structures. Nanomaterials are curren...
In this work the mechanisms leading to the enhancement of optical nonlinearity of nematic liquid cry...
Thermoplasmonics deals with the generation and manipulation of nanoscale heating associated with nob...
Individual molecules and nanoparticles can be imaged based on their absorption using photothermal mi...
The optical response of materials based on gold nanoparticle assemblies depends on many parameters r...
Gold nanoparticles (AuNPs) can be found in different shapes and sizes, which determine their chemica...
We experimentally demonstrate that the plasmonic heat delivered by a single layer of homogeneously d...
International audienceThe optical response of materials based on gold nanoparticle assemblies depend...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
We experimentally demonstrate that the plasmonic heat delivered by a single layer of homogeneously d...
The temperature distribution throughout arrays of illuminated metal nanoparticles is investigated nu...
The last few years have seen a growing interest in the ability of metallic nanoparticles (MNPs) to c...
Thermo-sensitive liquid crystals may result, for some aspects, good host materials for plasmonic nan...
The photo-induced heating from a layer of uniformly distributed gold nanoparticles has been characte...
It was shown that irradiation of a nematic liquid crystal doped with metal nanoparticles in the visi...
Nanomaterials represent a class of materials based on nanoscale structures. Nanomaterials are curren...
In this work the mechanisms leading to the enhancement of optical nonlinearity of nematic liquid cry...
Thermoplasmonics deals with the generation and manipulation of nanoscale heating associated with nob...
Individual molecules and nanoparticles can be imaged based on their absorption using photothermal mi...
The optical response of materials based on gold nanoparticle assemblies depends on many parameters r...
Gold nanoparticles (AuNPs) can be found in different shapes and sizes, which determine their chemica...
We experimentally demonstrate that the plasmonic heat delivered by a single layer of homogeneously d...
International audienceThe optical response of materials based on gold nanoparticle assemblies depend...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
We experimentally demonstrate that the plasmonic heat delivered by a single layer of homogeneously d...
The temperature distribution throughout arrays of illuminated metal nanoparticles is investigated nu...