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Field
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-ion battery materials. The focus is to develop atomic layer processing methods to tailor the surface properties of lithium ion battery electrodes using nanoscale thin films and surface treatments
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Under the guidance of a supervisor, the Postdoctoral Researcher will conduct research in electrochemical energy storage to support the Battery Performance and Cost (BatPaC) modeling team
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a model liquid metal battery (LMB) cell and characterize its electrochemical properties. LMBs consist of three superimposed liquid layers: a molten salt (electrolyte) sandwiched between two liquid
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other MMI colleagues. Will conduct research into the reuse, recovery, and recyclability of Electric Vehicle (EV) batteries to help mitigate resource constraints, reduce mining/emissions, and lower
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-based batteries for stationary energy applications. Where to apply E-mail maria.gimenez.lopez@usc.es Requirements Research FieldChemistryEducation LevelPhD or equivalent Skills/Qualifications PhD in
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for infrastructure life extension. Sustainable Maritime Engineering: Ship design and optimisation towards maritime decarbonisation; maritime battery room design for safety; intelligent ship and operations; autonomous
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correlative analysis. Alternative mediated systems other than lithium will also be investigated. Your work will also build transferable capability for other lithium and battery-relevant interfacial processes
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related to next generation cathode material synthesis for lithium-ion and sodium batteries. The selected individual will work under supervision and will assist the Lead PI on developing experimental methods
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responsibility of developing predictive tools based on machine learning for the analysis and interpretation of Raman vibrational spectra applied to battery materials. The successful candidate will design and
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, batteries, biomedicine, etc. Work Environment Training: Access to the CNRS internal training catalog (over 80 courses) Employee Benefits: Access to the Social Action and Mutual Aid Committee (sports and