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Field
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strong expertise and interest in developing MOFs and their composites for catalysis. The job vacancy involves designing, synthesizing, and characterizing highly catalytic active MOF composites
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, the postdoctoral researcher will be responsible for contributing to the development of advanced methodologies for predicting crystal structures (CSP) based solely on their chemical composition and atomistic modeling
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Environmental Engineering, Department of Concrete Structures Position name: Post-doc in the Research Staff Group (F/M) Requirements: • PhD degree in technical sciences in the discipline of Civil Engineering
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modelling on the other. Composite and nanostructured materials are in focus due to their superior functional and structural properties. Qualification requirements Appointment as Postdoc presupposes scientific
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-theoretical modelling on the other. Composite and nanostructured materials are in focus due to their superior functional and structural properties. The position is announced as part of the DFF1 project
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Circuits Project description: Neuronal synapses are remarkably heterogeneous and dynamic structures that vary widely in molecular composition, nanostructure, and signaling strength. This rich variety
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scale, will be characterized in terms of their structural properties and chemical composition. This research is part of the international project (ANR-DFG) “OPTIMIC” involving French partners Dr. Dorian
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materials, (2) Battery materials, (3) Quantum materials, (4) Semiconducting materials, (5) Magnetic materials, (6) Metal and structure materials, (7) Inorganic nanomaterials, (8) Macromolecules and
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carrier molecules, with an emphasis on elucidating how catalyst structure, composition, and electronic properties govern electrochemical activity and selectivity. The successful candidate will contribute
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, mechanical, and electrical properties of developed composites. Conduct 3D printing experiments to assess printability, structural fidelity, and functional performance. Collaborate with cross-disciplinary