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developing and characterizing the hybrid binder systems. The research integrates polymer science, composite engineering, interfacial mechanics, and chemical polymer design to eastablish a new binder type that
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interfacial chemistry on the atomic-scale is as yet unresolved, owing to the lack of sufficiently suitable analytical capabilities. In this project, the PhD candidate (m/f/x) will employ atom probe tomography
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of surfactant and lipid systems. The research focus includes problems such as cavitation, foam stability, and surfactant-mediated interfacial processes. The work will involve MD simulations, numerical analysis
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the electrochemistry of lithium batteries with solid electrolytes, with a particular focus on ion and charge transport processes and interfacial phenomena responsible for degradation. The position requires expertise in
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. This project sits at the intersection of fluid mechanics, complex fluids and interfacial phenomena. It offers the chance to contribute to ambitious, curiosity-driven research aimed at understanding a phenomenon
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measurements, from operating batteries. Such data are known to contain valuable information about complex electro-chemo-mechanical processes—such as particle fracture, interfacial delamination, and gas evolution
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. The position emphasizes functional polymers, hybrid materials, and interfacial chemistry for environmental sensing, contaminant detection, environmental and health applications, and decision-support systems
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relationships in battery materials. Strong background in battery research, with a clear interest in electrolyte materials, interfacial phenomena, and sustainable energy storage technologies. TU Delft (Delft
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Physics and Condensed Matter Physics, Photonics, Materials Science, and Biophysics. Interfacial rheology deals with the response of interfaces against deformations, it has been the subject of research
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, yarn, and composite. Particular attention will be paid to fiber/matrix interfacial performance, notably through nanoindentation testing. Where to apply E-mail marie-jose.pac@uha.fr Requirements Research