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) methodologies. The research will focus on Li-ion cells pairing polymer-based redox cathodes with graphite/Si–graphite anodes. It will encompass electrolyte formulation and screening, quantitative interphase
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electrolytes. Investigation of ion–polymer interactions, ionic transport, and thermoelectric properties. Selection and electrochemical characterization of redox-active materials for thermal energy conversion
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gel electrolytes. Investigation of ion–polymer interactions, ionic transport, and thermoelectric properties. Selection and electrochemical characterization of redox-active materials for thermal energy
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boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in the electrolyte exchange charge with solid booster materials held in the storage tanks
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electrochemical impedance spectroscopy. Strong scientific writing skills, evidenced by publications in peer-reviewed journals. Other Valued Skills Experience with polymer electrolytes, solid-state electrolytes
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related to staff position within a Research Infrastructure? Yes Offer Description The Doctoral Candidate (DC) will develop multifunctional ion-conductive polymers for improving anode-electrolyte interface
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obtained from biomass are promising building blocks for sustainable polymers and specialty chemicals, while electrochemical carboxylation offers the opportunity to incorporate CO₂ under mild conditions using
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for polymer electrolyte fuel cells. This position is under the direction of Dr. Chao-Yang Wang. Job Duties: We are looking for talented, ambitious, and hard-working candidates, especially those with experience
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of innovative binder and solid-state electrolyte materials. Who we are looking for The following requirements are mandatory: A doctoral degree in Materials Science, Polymer Chemistry, and Organic synthesis
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biointerfacing synthesis and Structural and physicochemical characterization of electrode materials (porous carbons, conductive polymers, porous polymers) and electrolytes: application of modern analytical methods