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Multi-Electron Redox Catalysis by Proton-Coupled Electron Transfer’ at the Georg-August-University Göttingen, together with the Max-Planck-Institute for Multidisciplinary Sciences (Göttingen
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Fritz Haber Institute of the Max Planck Society, Berlin | Berlin, Berlin | Germany | about 2 months ago
research on advanced functional materials with applications in heterogeneous catalysis, energy conversion and electrochemistry. By combining unique synthesis methods, state-of-the art tools for experimental
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successful scientific organization for fundamental research. At the FHI, researchers from all over the world are engaged in basic research in the field of chemical physics at interfaces and surfaces, catalysis
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Offer Description The Collaborative Research Center (CRC) 1633 ‘Pushing Electrons with Protons – Unifying Multi-Electron Redox Catalysis by Proton-Coupled Electron Transfer’ at the Georg-August-University
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funded by an EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Key words: Artificial Cells, DNA Nanoscience, Catalysis, Reaction Networks We
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is desirable: Electrochemistry, thin films, polymers, catalysis High motivation for pursuing a PhD within 3 years Ability to show initiative and work independently Excellent cooperation and
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(or more) of the following areas is desirable: Electrochemistry, thin films, polymers, catalysis High motivation for pursuing a PhD within 3 years Ability to show initiative and work independently Excellent
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, multifunctional electronics, and efficient chemical catalysis. In the project B5 we are searching for a candidate with background in transport or magnetotransport and interested in organic spintronics. For full
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: 01.04.2024 Application deadline: 15.03.2024 The Collaborative Research Center (CRC) 1633 ‘Pushing Electrons with Protons – Unifying Multi-Electron Redox Catalysis by Proton-Coupled Electron Transfer
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structural and electronic effects make sub-nm clusters extremely interesting for highly selective, mild, sustainable catalysis. We investigate model catalysts of clusters, produced with atomic size selection