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The position is based in the internationally renowned Functional Materials Department at TU Darmstadt, Germany which focuses on the development of resource-efficient functional materials. Your tasks
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PhD Position - Operando X-ray Characterization of Catalytic Interfaces for Chemical Hydrogen Storage
Infrastructure? No Offer Description Area of research: PHD Thesis Job description:PhD Position - Operando X-ray Characterization of Catalytic Interfaces for Chemical Hydrogen Storage The Institute for a
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tool for process design and laser-scanning strategies, the integration of simulation and experimental pulse-signal data to characterize lateral energy distribution, and the prediction of material removal
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fabricating porous iron electrodes Performing electrochemical evaluation in relevant cell configurations Applying advanced characterization methods to relate material properties to electrochemical behavior
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reaction mechanisms. In collaboration with the Chair of Physical Chemistry we will advance CSIA to mechanistically characterize photocatalytic reactions under controlled conditions, with the ultimate goal
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and derive new research directions from the results. Characterize the geometric, structural, and electronic properties of promising electrocatalysts using advanced materials
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description: Reference No. HI 2026/8 The Helmholtz Institute HIPOLE: Helmholtz-Institute for Polymers in Energy Applications Jena (HI-POLE) is looking for PhD student (m/f/d) in Polymer Materials for Light
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You will work in a highly interdisciplinary research environment, with access to world-class nanofabrication and characterization infrastructure. For deeper insights, please have a look at our
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support structures are perforated metal sheets or porous sintered metals. In both cases, corrosion of the support material is a key factor limiting the cell lifetime. Within the framework of the BMFTR
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biointerfacing synthesis and Structural and physicochemical characterization of electrode materials (porous carbons, conductive polymers, porous polymers) and electrolytes: application of modern analytical methods