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for Accelerated Materials Innovation, which aims to transform the discovery and optimization of high-performance functional materials through a fully integrated, interpretable AI platform. MAIAMI aims to establish
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of high-performance materials for green hydrogen production and energy storage. · Perform detailed STEM analyses on project-related materials provided by NEXPECH₂ partners, contributing directly to the
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technical needs for user experiments, an electrochemical microscope will be implemented, to reach high imaging resolution and a great flexibility concerning various electrochemical environments. Main Tasks
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the discovery and optimization of high-performance functional materials through a fully integrated, interpretable AI platform. MAIAMI aims to establish a paradigm shift in materials science by embedding
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Offer: Cutting-Edge Research: Engage in high-impact experiments in altermagnetic spintronics. International Collaboration: Collaborate with leading European experimental and theoretical groups, including
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approaches, where data storage and processing occur simultaneously at the materials level, inspired by the operation of the brain. This includes research on unconventional computing paradigms, such as
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on the controlled wet-chemistry synthesis of advanced inorganic nanoparticles, with a particular focus on high-entropy alloy (HEA) and multimetallic systems for energy-related applications. The work will
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of high-performance materials for green hydrogen production and energy storage. · Perform detailed STEM analyses on project-related materials provided by IMPRESS partners, contributing directly to the
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high degree of ambition and motivation, and with good personal qualities to work in our Team. - Good level in English. About the Gnm3 group: Our research focuses on the design, synthesis, and
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with high temporal and spatial resolution and broad wavelength tunability. Our aim is to gain an increased understanding of the ultrafast microscopic processes related to heat and charge, and exploit