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Electrochemistry with a focus on battery materials. Description of the workplace Lund University has since 2022 a close collaboration with a number of other top Swedish universities in battery research within
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, train yourself with different support, to become an expert in materials design and synthesis, and helps you to grow as an independent researcher in battery field. Project description The lithium-ion
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helps you to grow as an independent researcher in battery field. Project description The lithium-ion battery is the dominant rechargeable energy storage devices. In order produce high-performance lithium
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Advanced Battery Centre. We develop novel electrode and electrolyte materials, characterize them, evaluate and improve them with respect to battery performance, and study fundamental chemical processes and
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analysis where electricity storage in batteries is an important part. To determine the state of health (SoH) and thereby the value to be used for second life applications as well as for continuous monitoring
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that directly or indirectly addresses renewable energy system analysis where electricity storage in batteries is an important part. To determine the state of health (SoH) and thereby the value to be used
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subject Energy Sciences Work duties This project is focused on the development of high-fidelity reacting flow models to investigate thermal runaway in battery cells, pack, modules, and systems. Generally
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will be carried out within the Computational Materials Chemistry group and in close collaboration with experimental activities at the Ångström Advanced Battery Centre (ÅABC – https://kemi.uu.se
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two doctoral students for two different projects: 1) “Synthesizing Second-Life Batteries: A Heterogeneous Control Approach” funded by the Swedish government COMPEL - COMPetence for the ELectrification
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also be opportunities for new research directions during the employment. Examples of possible directions include battery swapping, charging infrastructure, and grid analysis for the future electric