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Max Planck Institute of Microstructure Physics, Halle (Saale) | Halle, Sachsen Anhalt | Germany | about 2 months ago
, interfacial charge transfer, and enantioselective molecular adsorption. The project combines first-principles electronic-structure calculations, Wannier-based modeling, symmetry analysis, quantum-transport
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electrolytes such as hot nitric acid and molten salts. The main mission is to understand the mechanisms of dissolution, passivation, and interfacial reactivity under severe conditions, while developing
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. The candidate should have strong experience in bio-interfacial science, drug encapsulation and delivery, antimicrobial materials, anchorage-dependent cell culture, biomaterials and tissue engineering. Candidates
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. Mechano-Coupled Phenomena: Interfacial mechanics, chemo-mechanics, and stress-driven behavior in structural or functional materials, especially under extreme environments. About the Environment Brown
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theoretical results iteratively inform each other. Expected results (1) A microscopic picture of ion dynamics and interfacial reactions under operating conditions, including the formation and evolution
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evolution of materials during electrochemical processes and to characterize interfacial ionic transport. Where to apply Website https://joboffers.bcamath.org/ Requirements Research FieldMathematics » Applied
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guidance from senior researchers. Design and execute fundamental experiments to understand energy landscapes, phase behavior, interfacial processes, and reaction pathways in multi-component systems. Design
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properties of the coatings using ellipsometry. You characterize the interfacial properties (surface passivation) using QSSPC (quasi-steady-state photoconductance decay) and PL (photoluminescence). You measure
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The doctoral research will take place at the Laboratory Geosciences Environment Toulouse (GET) within the Interfacial Reactivity and Biogeochemistry team, in collaboration with the Laboratory for Systems
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Growing epitaxial thin films and heterostructures by pulsed-laser deposition and magnetron sputtering and using epitaxial strain and interfacial effects to stabilize metastable phases with desired