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on different conditions (composite electrode formulation, electrolyte formulation, pH, oxide or polymer-based negative electrode, temperature…) Optimisation of the devices. Redaction of drafts/publications and
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fabrication by sputtering (e.g., magnetron sputtering; thin-film deposition workflows). • Materials characterization methods (morphology, structure, composition), e.g., SEM/EDS, XRD, profilometry, IBA, etc
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. The selected applicants will be informed about the composition of the committee, and each applicant is given the opportunity to comment on the part of the assessment that concerns him/her self. Letter of
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scale, will be characterized in terms of their structural properties and chemical composition. This research is part of the international project (ANR-DFG) “OPTIMIC” involving French partners Dr. Dorian
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strong expertise and interest in developing MOFs and their composites for catalysis. The job vacancy involves designing, synthesizing, and characterizing highly catalytic active MOF composites
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, the postdoctoral researcher will be responsible for contributing to the development of advanced methodologies for predicting crystal structures (CSP) based solely on their chemical composition and atomistic modeling
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with the fabrication and characterization of porous functional materials such as MOFs and MOF composites as well as the fabrication of different nanoparticles Able to examine the textural and structural
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further qualification. Solid knowledge within electrochemical characterization Experience with chemical synthesis Experience with either electrolysers or flow batteries Experience with construction
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further qualification. Solid knowledge within electrochemical characterization Experience with chemical synthesis Experience with either electrolysers or flow batteries Experience with construction
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and their composite materials, derived from inorganic by-products and other sustainable precursors, is available at CBS.GPE. This position involves the design, synthesis, and characterization of metal