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DTSTART;TZID=Europe/Paris:20260528T140000
DTEND;TZID=Europe/Paris:20260528T153000
DTSTAMP:20260626T183703
CREATED:20260512T072823Z
LAST-MODIFIED:20260512T082512Z
UID:14650-1779976800-1779982200@www.is2m.uha.fr
SUMMARY:Thermoplasmonic Heat Control & Hybrid Nanoparticles
DESCRIPTION:  \nCéline Molinaro IS2M – PHOTON \nMetallic nanoparticles (NPs) exhibit unique properties derived from their plasmonic behavior. When illuminated under specific conditions\, these NPs host localized surface plasmons\, inducing a collective oscillation of electrons at the metal-dielectric interface. This phenomenon gives rise to three effects: local field enhancement\, hot electron/hole pair generation\, and heat production. \nMy research focuses on the latter effect\, thermoplasmonic heat generation\, by leveraging thermal polymers to map the temperature of NPs upon illumination\, both at the millimetric [1] and nanometric scales [2\,3] (see figure above). Here\, the polymer serves a dual role\, enabling both temperature cartography and the formation of hybrid NPs. \nReferences \n1. C. Molinaro et al.\, Chemical Method Based on Thermally Activated Free Radical Polymerization to Determine the Temperature in Thermoplasmonics\, ACS Applied Polymer Materials\, 2024. \n2. C. Molinaro et al.\, Controlled Polymerization at macroscale and nanoscale through thermoplasmonics\, Plasmonics\, 2025. \n3. A. Khitous et al.\, Unveiling Localized Plasmonic Activation comparing Photochemically and Thermally Initiated Polymerization\, ChemRxiv\, 2025.
URL:https://www.is2m.uha.fr/event/thermoplasmonic-heat-control-hybrid-nanoparticles/
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