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undergo compaction, leading to changes in permeability, porosity, and long-term membrane stability. We will investigate how nanoscale morphology, filler–polymer interfacial chemistry, and structural
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is limited by several technological challenges. This project will focus on the interfacial processes occurring within lithium-sulfur cells with a particular focus on the development of new catalysts
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, and machine-learned force fields to describe ion transport and interfacial evolution. These models will be extended to mesoscopic and continuum scales (kinetic Monte Carlo, phase-field) to capture
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, chemically demanding, and operationally complex. By developing porous structures that enable fluids to separate naturally through capillary and interfacial effects, this project aims to advance a more