There is a growing interest in modulating the temperature under the illumination of light. As a heat source, metal nanoparticles (NPs) have played an important role to pave the way for a new branch of plasmonics, i.e., thermo-plasmonics. While thermo-plasmonics have been well established in photo-thermal therapy, it has received comparatively less attention in materials science and chemistry. Here, we demonstrate the first proof of concept experiment of local chemistry and graphitization of metalized polymeric nanofibers through thermo-plasmonic effect. In particular, by tuning the plasmonic absorption of the nanohybrid through a change in the thickness of the deposited silver film on the fibers, the thermo-plasmonic effect can be adjuste...
International audienceLocalized surface plasmon-induced photopolymerization of free-radical acrylate...
Janus nanoparticles containing plasmonic materials have attracted great attention in the thermoplasm...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
Plasmonics, as an emerging field, aims to exploit the unique optical properties of metallic nanostru...
We used electroless deposition to fabricate clusters of silver nanoparticles (NPs) on a silicon subs...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
The thermoplasmonic effect causing the local overheating in nanostructured metallic substrates has b...
International audienceSince the early 2000s, the experimental and theoretical studies of phototherma...
International audienceThermoplasmonics Heating Metal Nanoparticles Using Light Plasmonics is an impo...
We report an original method for directly fabricating gold nanoparticles (Au NPs) in a polymer matri...
The fabrication of functional surfaces based on arrangements of metallic nanoparticles (MNPs) is cha...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
Understanding how plasmonic nanoparticles collectively generate heat upon exposure to light and thus...
International audienceLocalized surface plasmon-induced photopolymerization of free-radical acrylate...
Janus nanoparticles containing plasmonic materials have attracted great attention in the thermoplasm...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
Plasmonics, as an emerging field, aims to exploit the unique optical properties of metallic nanostru...
We used electroless deposition to fabricate clusters of silver nanoparticles (NPs) on a silicon subs...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
The thermoplasmonic effect causing the local overheating in nanostructured metallic substrates has b...
International audienceSince the early 2000s, the experimental and theoretical studies of phototherma...
International audienceThermoplasmonics Heating Metal Nanoparticles Using Light Plasmonics is an impo...
We report an original method for directly fabricating gold nanoparticles (Au NPs) in a polymer matri...
The fabrication of functional surfaces based on arrangements of metallic nanoparticles (MNPs) is cha...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
Understanding how plasmonic nanoparticles collectively generate heat upon exposure to light and thus...
International audienceLocalized surface plasmon-induced photopolymerization of free-radical acrylate...
Janus nanoparticles containing plasmonic materials have attracted great attention in the thermoplasm...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...