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such, both fundamental and applied. Duties We are looking for a motivated and ambitious student for developing semi-solid electrolytes and characterizing their implementation and performance in lithium
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renewable carbon feedstocks, in lithium- and sodium-ion batteries. The ultimate purpose is to reduce climate impact, improve safety, and decrease strategic dependence on fossil and externally sourced raw
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recycling approaches for lithium-ion and sodium-ion battery materials, with a particular focus on lithium iron phosphate (LFP), lithium manganese iron phosphate (LMFP), and sodium-ion battery chemistries
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understanding of Lithium-ion battery systems, BMS, and battery models, including equivalent circuit and electrochemical models. Proven ability to develop and implement state estimation algorithms, such as Kalman
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PEPR website: www.pepr-batteries.fr . Mission You will contribute actively to the development of methods for analysing heat generation of lithium-ion and sodium-ion batteries. Main activities
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are available across a broad range of research areas, including: ● Solvent-based direct lithium extraction ● Low energy capture of industrial carbon dioxide ● Membranes for recovery and re-use of battery metals
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Supervised by Prof Graham Newton, Prof Lee Johnson, Prof Darren Walsh Start date: October 2026 We are seeking to recruit a highly motivated and enthusiastic PhD student to work in our lithium-sulfur
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Lithium plating is among the most hazardous failure mechanisms affecting lithium-ion batteries under aggressive cycling conditions. It often initiates silently, yet can lead to catastrophic outcomes
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batteries are a promising beyond-lithium energy storage technology due to calcium's natural abundance, low cost, and favourable electrochemical properties. However, reversible calcium plating and stripping
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and sustainable electrolyte materials for advanced energy storage systems. The project addresses key challenges in post-lithium battery technologies and focuses on the development of innovative