Rod-like gold nanoparticles are directly embedded in a 1D-polymeric spin crossover (SCO) material leading to singular Au@SCO nanohybridarchitectures. The resulting architectures are designed to promote a synergetic effect between ultrafast spin-state photoswitching andphotothermal properties of plasmonic nanoparticles. This synergy is evidenced by the strong modulation of the surface plasmon resonance ofthe gold nanorods through the spin-state switching of the SCO component and also the strong enhancement of the photoswitching efficiency compared to pure SCO particles. This remarkable synergy results from the large modulation of the dielectric properties of the SCO polymer upon its thermal switching and the enhancement of the heating of the...
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce co...
Gold nanoparticles (Au NPs) are of great interest due to their unique localized surface plasmon reso...
Surface plasmons are collective and coherent oscillations of conduction band electrons in metal nano...
Rod-like gold nanoparticles are directly embedded in a 1D-polymeric spin crossover (SCO) material le...
We investigate the spin-state photoswitching process in Au@SCO nanohybrids made of gold nanorods coa...
Nanoparticles of gold were successfully grafted onto nanoparticles of a 1D polymeric spin-crossover ...
International audiencePlasmonic resonance properties of a series of lithographically patterned gold ...
A simple protocol to prepare core-shell gold@spin-crossover (Au@SCO) nanoparticles (NPs) based on th...
Spin Crossover (SCO) is a promising switching phenomenon when implemented in electronic devices as m...
This thesis is part of the development of a new generation of composite nanomaterials switchable usi...
We investigated the plasmon-exciton interactions in an individual gold nanorod (GNR) with monolayer ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
International audienceHerein, we report the variation of localized surface plasmon resonance (LSPR) ...
Bilayer spin crossover (SCO)@polymer nanocomposites show robust and controllable actuation cycles up...
Gold nanoparticles (AuNPs) incorporated into the stimuli-responsive polymeric matrix play an increas...
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce co...
Gold nanoparticles (Au NPs) are of great interest due to their unique localized surface plasmon reso...
Surface plasmons are collective and coherent oscillations of conduction band electrons in metal nano...
Rod-like gold nanoparticles are directly embedded in a 1D-polymeric spin crossover (SCO) material le...
We investigate the spin-state photoswitching process in Au@SCO nanohybrids made of gold nanorods coa...
Nanoparticles of gold were successfully grafted onto nanoparticles of a 1D polymeric spin-crossover ...
International audiencePlasmonic resonance properties of a series of lithographically patterned gold ...
A simple protocol to prepare core-shell gold@spin-crossover (Au@SCO) nanoparticles (NPs) based on th...
Spin Crossover (SCO) is a promising switching phenomenon when implemented in electronic devices as m...
This thesis is part of the development of a new generation of composite nanomaterials switchable usi...
We investigated the plasmon-exciton interactions in an individual gold nanorod (GNR) with monolayer ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
International audienceHerein, we report the variation of localized surface plasmon resonance (LSPR) ...
Bilayer spin crossover (SCO)@polymer nanocomposites show robust and controllable actuation cycles up...
Gold nanoparticles (AuNPs) incorporated into the stimuli-responsive polymeric matrix play an increas...
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce co...
Gold nanoparticles (Au NPs) are of great interest due to their unique localized surface plasmon reso...
Surface plasmons are collective and coherent oscillations of conduction band electrons in metal nano...