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The Interfacial Processes Group in the Chemical Sciences and Engineering (CSE) Division at Argonne National Laboratory is seeking a highly motivated Postdoctoral Researcher to join a Laboratory
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, electrical characterization, and electrochemical measurements. Perform interfacial characterization to understand bonding mechanisms between nanomaterials and matrix phases. Analyze experimental data, develop
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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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(Label of Excellence - 00180410, Normandy Region) which aims to develop a new perspective on interfacial interactions for a tailored performance of porous materials. This project aims to apply and combine
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materials chemistry. The successful candidate will undertake fundamental studies into chemical speciation and interfacial processes that occur during oxide dissolution. The role will combine laboratory-based
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residuals Nanobubble-based water treatment technologies Microplastics and nanoplastics in environmental systems Environmental surface chemistry and interfacial phenomena Current projects include NSF-supported
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interest in metal–impurity interactions, interfacial phenomena and its commitment to computation-guided design for green and circular steel production. You will collaborate closely with researchers from
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contributions (local moments, exchange and magnon-mediated channels, interfacial and non-adiabatic effects) not captured by conduction-electron transport alone. Derive the corresponding analytical expressions
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theory and associated simulations for interfacial properties of bicrystal interfaces. Such interfaces are created by single crystal membranes grown by Molecular Beam Epitaxy and released from a substrate