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Postdoc – Synthesis and up-scaling of high-performance active materials for Na solid-state batteries
electrolytes (polymer, ceramic, hybrid) and their electrochemical characterization Optimization of the materials and cells to achieve the highest possible performance in the different cell designs and thus
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through pragmatic solutions. For this you will bring: University degree (Master, Diploma or equivalent) in Material Science or other adjacent fields (e.g. Physics, Chemistry, Computational Engineering
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to develop and advance battery chemistries by introducing new functionalities into an existing battery technology to achieve ultra-high performant, sustainable and smart lithium-ion batteries. Your tasks in
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-based batteries and their chemistry You cooperate with partners from theory to optimize charge transport at the electrolyte/ electrode interface You take participance in regular project meetings with
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the highest possible performance in the different cell designs and thus demonstrate the industrial relevance Characterization of the materials, cells and, if necessary, degradation phenomena using advanced
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at workshops, conferences, in the public Present research results at scientific meetings, conferences and as scientific papers Support the different RIANA working groups in terms of information, organization
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to design electrochemical processes for this endeavor and build up an understanding of the partaking reactions. Specifically, our team is interested in studying the effect of different heterogeneous catalysts
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the efficient and reliable analysis and interpretation of different experimental imaging techniques such as atomic force or electron microscopy as well as tomography. We intend to use different machine learning