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stimulating scientific environment and state-of-the-art technical platforms (amphibian animal facility, confocal microscopy, access to SEM, CT scan). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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-metallic oxides (such as SO₂, NO₂ and CO₂) on synthetically produced mineral particles under light illumination. You will synthesize nanoparticles using advanced generation methods and study their properties
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MRC DiMeN Doctoral Training Partnership: Targeting Iron-Laden Macrophages with Therapeutic Nanoparticles to Improve Recovery After Haemorrhagic Stroke MRC DiMeN Doctoral Training Partnership PhD
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personalized therapy based on bioinspired nonlamellar LYotropic colloid Nanoparticles with Tumor homing ability (GLYNT)” with reference 2023.13674.PEX, supported by national funds by FCT / MECI, is available
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. The main objective will be to functionalize the surface of these 3D metal parts, obtained by additive manufacturing, with a coating based on metal oxide nanoparticles. This coating must have a dual
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nanosystems, where optically active materials (quantum dots, 2D nanomaterials) are embedded between anisotropic nanoparticles, on planar structures, or in ordered nanoparticle arrays. The planned research aims
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single-particle spectroscopy, the synthesis and functionalization of plasmonic nanoparticles, and the theoretical modeling of the corresponding processes. Development and implementation of your own
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Institut pour l'avancée des Biosciences -Centre de Recherche UGA / Inserm U 1209 / CNRS UMR 5309 | Grenoble, Rhone Alpes | France | 3 months ago
Jessica Escoffier and funded by the (Agence National de Recherche), we aim to develop novel lipid nanoparticles to restore male infertility via mRNA therapy. The aim of this PhD project is: 1. To engineer
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characterisation of nano-composite materials (films, devices) containing spin-transition nano-objects interacting (mechanically and/or electrically) with other constituents (polymer, metallic nanoparticles) in order
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of the primary tumor and to limit the side effects of anticancer treatments, our project aims to evaluate a multimodal nanoplatform based on the functionalization of gold nanoparticles with: A peptide vector, NDP