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their structure and properties. Develop and optimize aqueous electrolyte systems, evaluating their electrochemical window, ionic transport properties, long-term stability, and interactions with electrode materials
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collaboration with other departments. We research next-generation batteries, more efficient solar cells, more environmentally friendly hydrogen, and materials that can replace critical elements. In
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University Work duties: This postdoctoral position is part of the AFLOW consortium supported by the Swedish Energy Agency and focuses on materials modelling of chemical stability in aqueous organic redox flow
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