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. In this project, we aim to develop digital tools combining density functional theory (DFT) and machine learning (ML) to accelerate the in-silico design of solid catalysts for the DA process. - Perform
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The subject concerns the study of new catalysts
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related to staff position within a Research Infrastructure? No Offer Description Post-doctoral fellowship in the development of MOF catalysts for photocatalytic CO2 conversion and water splitting Mohammed
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electrolyzers systems that can operate with non-ideal water streams within the framework of an EU-funded project. The candidate(s) will lead the design and implementation of anodic catalysts and electrodes
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storage at solid-liquid interfaces (i.e., catalyst-molecule) using advanced analytic methodologies (including large-scale research facilities). The current project deals with establishing operando analytic
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of suitable catalysts and the optimization of operating conditions. This project aims to investigate the catalytic conversion of phenolic monomers via the catalytic hydrogen transfer process in both gas and
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. Major advances have been made in diverse application areas: adsorbents, graphene biocarbons, co-crystals, cooperative multifunctional catalysts, bio-based catalysts, and bioaerogels. Molecular modeling
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(e.g. fuel cells, batteries, heterogeneous catalysts, interfaces) Proficiency in high-level programming languages, e.g. Python Previous supervision of graduate students, as well as laboratory
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University Foundation, aims to develop self-assembling and water-soluble artificial mini-proteins with bioinspired heme&Trp redox cofactors for targeted catalysis, and resulting in novel versatile catalysts
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is lost due to difference in operating conditions. This postdoc position will analyze oxygen evolution catalysts for water electrolysis at 30 bar and 80 °C. A major focus will be on stability, thus we