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the electrolyte exchange charge with solid booster materials held in the storage tanks, decoupling energy density from active-material solubility while preserving the modularity and safety of aqueous flow batteries
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and associated environmental impacts. Contribute to short-term (2026 to 2030) and long-term (2030 to 2050) verticalisation forecasting models based on machine learning, and to their validation against
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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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of cooperative effects in charge transport, proton dynamics and electrochemical conversion in solids and at electrochemical interfaces. Your tasks The research focuses on experimental investigations and theory
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of the candidate. It is awarded for 2 years and comes with a light teaching load. Applications will be considered on a rolling basis. For full consideration, submit your application by the 15th of July 2026. Every
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-ultraviolet and near-infrared pulses, and electron-ion coincidence detection in a reaction microscope. The scientific programme addresses chiral electronic wave packets, charge migration and charge transfer
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exclusively at the desired site while minimizing systemic exposure. The chemical formulation and engineering of these carriers — including their drug loading, encapsulation efficiency, and release kinetics
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to adopt more circular load-bearing systems. SXL also contributes to teaching building technologies and circular practices to undergraduate, master's students and professionals in architecture and civil