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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Gorlitz, Sachsen | Germany | about 1 month ago
employment. Starting date: 01.04.2026 Job description:PhD Student (f/m/d) - Electrochemical swing adsorption of carbon dioxide With cutting-edge research in the fields of ENERGY, HEALTH and MATTER, around
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compositions of these materials with potential adsorption properties for simulants of toxic agents or catalytic properties of interest for degradation action, a molecular modeling approach based on density
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materials will subsequently be applied in catalysis and adsorption in large scale. The candidate will primarily focus on extracting and purifying metals from an inorganic matrix by-product, which will then be
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challenge. The INL laboratory has been working since 2021, on the modeling of the impact of chemical modification of surfaces on the adsorption of metabolites, from fluid samples, and their subsequent
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PhD Position – Development of metal-organic frameworks-glass composites for sustainable applications
to investigate these complex structures. Overall, the project aims to establish MOF-glass composites as a new class of functional materials for sustainable applications such as adsorption, catalysis, and
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their hydrogen adsorption properties. Collaborate with partners to scale up processes to an industrial level. Characterization: Perform physicochemical characterizations (Raman, FTIR, XPS, TEM, SEM, AFM, BET, DLS
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(adsorption, absorption, cryogenics, membranes). The research of product post-treatment are based on studies reflecting separation and purification by hydromechanical separation processes (filtration
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is looking for a PhD Student (f/m/d) - Electrochemical swing adsorption of carbon dioxide. Your tasks Performing quantum mechanical and ML-based simulations to determine CO2 adsorption energies
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, conversion and storage, and organic optoelectronics intelligent and advanced polymers and materials. Job description: The successful candidate will: Conduct original and high-quality research in adsorption
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methods to understand and predict the adsorption, self-assembly, and protective behavior of N-heterocyclic carbenes (NHCs) on metallic and oxidized surfaces. NHCs are promising corrosion-inhibiting