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Field
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situ characterization tools available in the laboratory (X-ray diffraction, XPD, AFM, electrical and transport measurements, etc.), and also from the team’s dense collaborative network. Scientific
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. At the division, we conduct research within functional porous materials for energy and environmental applications, nano biomaterials, sustainable electrical energy storage and energy transformations
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efficiency, as well the operational lifetime of these devices. The project involves optical and electrical in operando characterization techniques using custom-designed setups, mainly involving Acquisition
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, electric vehicles, and data centers. Their conventional maintenance is often based on fixed schedules, leading to premature replacement of components and significant electronic waste. This PhD project aims
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the melting of the metal wire by a concentrated electric arc to the droplet-by-droplet deposition of material into the molten pool generated by the same electric arc heat source. In situ and ex situ
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of experienced researchers from CNRS, UL, Arts et métiers, IMT and CEA, as well as several PhD students and post-doctoral researchers, working on high-throughput material characterization and micromechanical
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in terms of improving soil health, optimising water use, and/or valorisation of organic waste and agri-food by-products) and address broader sustainability goals in Catalunya and beyond, under current
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, conductivity, and long-term durability. The project is fundamentally science-driven and aims to establish mechanistic understanding of how phase purity, defect chemistry, carbon architecture, and interfacial
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at the 'Group of Smart Nanoengineered Materials, Nanomechanics and Nanomagnetism -Gnm3' (https://jsort-icrea.uab.cat/) of the Universitat Autònoma de Barcelona (UAB). The position is in the framework
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for direct-injection ammonia engines to advance zero-carbon fuel technologies. Liquid ammonia macroscopic sprays and their wall interactions are experimentally characterized under engine-like conditions using