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methods to understand and predict the adsorption, self-assembly, and protective behavior of N-heterocyclic carbenes (NHCs) on metallic and oxidized surfaces. NHCs are promising corrosion-inhibiting
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3 Mar 2026 Job Information Organisation/Company AGH University of Krakow Department Departement of Chemistry and Corrosion of Metals Research Field Chemistry Computer science Engineering Technology
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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
the full battery (charge transfer, passivation film, adsorption, corrosion, ionic diffusion, tortuosity...). As a Postdoctoral Researcher specialized in your field, you are expected to conduct the following
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Australia’s manufacturing sector through intelligent automation, technology innovation, and workforce development. This collaborative project will advance the next generation of wear- and corrosion-resistant
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batteries including electrochemical properties of electrode materials, testing, and corrosion limitation. Additional comments This position is located in a sector covered by the protection of scientific and
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manufacturing sector through intelligent automation, technology innovation, and workforce development. This collaborative project will advance the next generation of wear- and corrosion-resistant metal matrix
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performance. Experience with electrochemistry, corrosion, molten salts, or advanced materials under extreme chemical or thermal conditions. Experience developing or applying materials solutions to challenges in
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sputtering, followed by structural, mechanical, corrosion, and electrical characterization; - Evaluation of bacterial and osteoblast activity upon electrical stimulation of the samples. Applicable legislation
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research and projects, among which are time-resolved photoemission, electrochemistry, corrosion, catalysis and thin-film deposition. Would you like to work at one of the brightest lightsources in the world
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of investigation, our research endeavors primary focus on experiments related to microbe-influenced corrosion in lab mice colonies. The successful candidate is expected to enhance the lab's ability to support