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research work on metal extraction from spent lithium-ion batteries. The role will focus on the characterization of metal components in spent batteries, extraction processing design, and failure mode and
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generation electrochemical energy technologies through holistic views of fuel cells (especially ammonia fuel cells) and different kinds of batteries, including metal and metal ion (Li, Na, Ca etc
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of liquid electrolytes for sodium-ion batteries (NIBs) as a strategic alternative to lithium-ion technology, supporting the European energy and mobility transition. Your tasks in detail: Identification
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Earth Orbit (GEO) and science spacecraft when energy from sunlight is unavailable. The most important characteristic of a space battery is specific energy, measured in Wh/kg. Since most lithium-ion
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, please contact patrick.lacroix-desmazes@umontpellier.fr and cecile.bouilhac@umontpellier.fr Context: Controlled management of strategic metal resources in lithium-ion batteries (LIB) has become a pressing
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Particle Engineering for Next Generation Batteries, you will conduct research into new particle and powder engineering methodologies for lithium-ion battery electrode manufacture. You will collaborate within
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, Faculty of Engineering and Science as a Ph.D. research fellow in the field of lithium-ion battery cell research affiliated to the Department of Engineering Sciences , for a period of three years
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group’s research focuses on developing revolutionary materials for renewable energy devices, especially in the area of rechargeable batteries such as lithium-ion batteries, sodium-ion batteries, and zinc
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Join us at the Division of Energy and Materials, Department of Chemistry and Chemical Engineering, and help advance knowledge in the field of hydrometallurgy and Li-ion batteries recycling. About us
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master's programmes. More information is available on our website . Work duties The project focuses on designing and creating new high-entropy alloys for use as electrodes in both lithium-ion and sodium-ion