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for oxidation reactions, and to estimate corrosion and degradation rates. The results will constitute guidelines to select the best candidate materials to produce electrodes for ozone production with enhanced
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environments. Knowledge of materials behavior in extreme environments (e.g., high temperature, irradiation, corrosion, and mechanical stress) and familiarity with multiscale and continuum modeling approaches
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, corrosion, spectroscopy, ion chromatography, GC, high pressure) Excellent communication and collaboration skills Ability to work independently and contribute to an interdisciplinary research team Experience
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are corrosion and its inhibition, surface treatments, energy storage and conversion, to which problems linked to the behaviour of interfaces in natural environments have gradually been added. The laboratory's
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, modification, and mechanical and/or corrosion testing of bioresorbable metallic materials is required. Previous exposure to vascular biomaterials, 3D printing, and biological characterization is desirable but
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) Corrosion behavior (electrochemistry & high-temperature oxidation) In-situ monitoring of AM processes Computational skills in: Phase-field modeling, Machine Learning, FEM, DEM, COMSOL Alloy design (CALPHAD
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osteointegration. This will involve surface modification of implants through methods such as plasma treatment, silanization, and the application of specialty coatings to impart corrosion resistance. Additionally
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science, inorganic chemistry or heterogeneous catalysis - You have first experience/interest in electrochemistry (electrocatalysis, plating, corrosion…) - Excellent English speaking and writing abilities