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to develop chiral metal nanoclusters, understand their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and apply them to relevant processes
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legacy constitutes one of the most significant elements of Aragonese cultural heritage. The declaration of Aragonese Mudejar Architecture as a World Heritage Site by UNESCO in 1986 and 2001 recognizes
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for manufacturing chiral metal nanoclusters of different sizes, metal compositions and degrees of chirality (intrinsic and induced). The main objective is to use the nanoclusters designed both as multiphoton imaging
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(development of electric mobility and the resulting demand for transition element salts). The aim of this thesis is to study the cyclability and recyclability of Li-ion and Na-ion system materials. The first
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critical for optimizing performance and is an important ingredient in the design of high performance parts in aeronautics, energy, transport, and plenty of other domains. The theory behind the aforementioned
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%). One major factor in their unemployability is related to their specific difficulties in urban mobility. The SAMAP project, an interdisciplinary project involving two research centers, focuses
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and Electronic Design Design and build the MDAL, its power electronics, instrumentation, and the valve control system. Task 3: Component Characterization Perform “decoupled” characterization
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PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F
no fully compatible component currently exists. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7073-MICPEF-091/Candidater.aspx Requirements Research FieldPhysicsEducation LevelPhD
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contemporary concerns, the development of eco-friendly transformations especially based catalysis with non-noble metal is a timely topic. Recently, our research group, “Synthesis of fluorinated molecules” in
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our dependence on fossil fuels. Energy Geostructures (EGs) represent an effective means to meet the world request of less dependence on unsustainable resources by being designed as dual-purpose elements