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for next-generation lithium- and sodium- ion batteries. This role provides a unique opportunity to work at the forefront of battery innovation, focusing on the design and implementation of novel synthesis
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characterization and degradation characterization of electrode materials for high energy density lithium-ion battery systems. This research will explore fundamental aspects of material synthesis, recycling
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. One is to support an effort to recycle graphite from Li-ion batteries to produce graphene and graphite for reuse in batteries or other applications. The other focus will be on valorizing waste products
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operando characterization using the Advanced Photon Source (APS). This work will support critical material recovery and battery recycling initiatives. The successful candidate will help drive next-generation
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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 and techniques
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in high-voltage battery systems through a fundamental understanding of interfacial mechanisms. Position Requirements Recent or soon-to-be-completed PhD (within the last 0-5 years) in Organic Chemistry
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the experimental observations, prepare technical reports and manuscripts, and support future project applications. Major duties and responsibilities include: Formulate slurry for catalyst membrane and battery
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of critical materials throughout the automotive, batteries, and other energy supply chains, from raw minerals extraction to manufactured components, particularly as it applies to US imports and exports