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Field
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the durability of materials and improve recycling processes. Be part of this change and explore cutting-edge methods in chemical, mechanical, and plasma processing of metal ores for a truly circular economy
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infection models. This PhD project aims at investigating biofilm maturation and antibiotic tolerance on metal surfaces, including titanium and stainless steel. The focus will be on clinically relevant
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degradation processes in PEM, AEM, and alkaline water electrolysis Implementation of AI-based tools in water electrolysis research Collaboration with computer science, catalyst synthesis and characterization
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. Postdoctoral placement at a top institution/with an active research group/professor (for those interested in the academic track). Placement in a leading research NGO/think-tank/multinational company (for those
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of high cor
on unravelling the origin of the elevated corrosion rates of AM-built Mg- and Zn-alloys. The work will revolve around micro- and nanoscopic visualization of initial micro-galvanic activity upon metal contact with
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on computational optimization of
, scanning speed, layer thickness, scan strategy and subsequent heat-treatment) has a significant effect on the microstructure (grain size, alloying elements distribution, crystallographic texture), mechanical
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revolve around micro- and nanoscopic visualization of initial micro-galvanic activity upon metal contact with an aqueous electrolyte. For this, in situ SEM and in situ TEM will be used at HEREON. This will
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microstructure (grain size, alloying elements distribution, crystallographic texture), mechanical properties (hardness, yield and tensile strength) and corrosion profile (rate and localization). This work focuses
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measurements, including monitoring of local pH and dissolved hydrogen and oxygen concentrations at metal-electrolyte interface; gain understanding of the factors influencing the initiation and propagation
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About the position Aluminium transition-metal nitrides have emerged as a family of new material that offers significantly enhanced piezoelectricity and beyond, empowering new acoustic and electrical