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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Optical levitation is an emerging theme in optomechanics where a nanoparticle is trapped
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Plasmonic catalysis has been a rapidly growing research area since the 2010s. Based on the confinement of light within metallic nanoparticles, it holds great promises for the development of sustainable
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). - Experience in metal (for exemple Cu) nanoparticle deposition methods - Strong knowledge in materials characterizations (XRD, Gaz physisorption, SEM, TEM, XPS, UV-Vis spectrometry) - Additional knowledge in gas
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) in Paris. It will be co-supervised by Catherine AMIENS, from the LCC's 'Engineering of Metallic Nanoparticles' team (https://www.lcc-toulouse.fr/ en/engineering-of-metal-nanoparticles-team-l/ ) and
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Oxidation Reaction for application in fuel cell systems. To achieve this we will develop Hybrid bioanodes incorporating nanoparticle catalysts with electroactive bacteria to improve fuel utilisation and
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enhanced fluorescence (PEF), - identifying optimal properties of functionalized plasmonic nanoparticles to enhance the PEF effect, - characterizing and measuring the PEF enhancement of the developed fiber
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products of an electrochemical reaction - Preparation of three types of ultrathin gold films on silicon: films formed from dense monolayers of gold nanoparticles, continuous gold films, and micrometric gold
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photocatalysis using semiconductor nanoparticles (sensitized or not with grafted dyes) and homogeneous photocatalysis. We are looking for a candidate capable of independently leading this project while working in
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the colloidal stability of plastic nanoparticles in the biological fluids of interest. This training will be delivered through targeted sessions within the LIEC team. This transdisciplinary immersion will equip
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PROJET-PEPR : MOF composites for the overall CO₂ reduction through panchromatic photocatalysis (M/F)
porous 'host' materials of the MOF (metal-organic framework) type, and functional host species (chromophores, molecular catalysts, metal nanoparticles, polyoxometalates). Here, we propose to develop new