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research student.About the project and ScholarshipsThe rapid adoption of lithium-ion batteries (LIB) in electric vehicles and energy storage globally is generating a significant volume of waste end-of-life
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PhD Position in Colloidal Assembly for Nanostructured Lithium-Ion Batteries Faculty: Faculty of Science Department: Department of Chemistry Hours per week: 36 to 40 Application deadline: 15
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the University of Birmingham. The studentship will develop structure-property relationships in disordered cobalt-free lithium-ion and sodium-ion battery cathode materials. The cathode represents
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adoption of lithium-ion batteries (LIB) in electric vehicles and energy storage globally is generating a significant volume of waste end-of-life lithium-ion batteries. The battery separator, 5
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: Full-time Place of Study: Bay Campus Project Description: Lithium-ion batteries (LIBs) are the backbone of modern energy storage, but further breakthroughs in energy density and cost efficiency
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Sodium-ion batteries are rapidly emerging as a powerful alternative to lithium-ion systems—offering significant advantages in cost, sustainability, and safety. To unlock their full potential
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challenges in the development of sodium-ion batteries (SIBs) through the fundamental understanding and engineering of solid-electrolyte interphases (SEI) on hard carbon anodes. Sodium-ion batteries
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in validation on EV cells. Applicants are required to self-fund their fees and living expenses during the study period. Thermal runaway in lithium-ion battery packs poses critical safety challenges in
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5.2: Deep Eutectic Solvents (DES) are increasingly being studied for their potential role in lithium-ion battery recycling. DES has limitation for industrial application due to its poor performance in
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safety questions: Determining optimal stored energy requirements for grid support, considering various timescales and power ratings. Reviewing and benchmarking storage technologies (lithium-ion batteries