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and CFF grants (https://reporter.nih.gov/search/kpoQKsh8Pkqp4S1_RS1-PQ/project-details/11259946 ), which looks for fundamental insights into novel oxidative reactions, the exported proteins that depend
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characterization of novel compounds, followed by their biological evaluation to identify selective NOX inhibitors as potential therapeutic agents for oxidative stress-related diseases. Where to apply Website https
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI CHIMICA INDUSTRIALE "TOSO MONTANARI" | Italy | 3 days ago
. These dynamic systems can change surface composition, oxidation state, crystallinity, and morphology during operation, often making ex situ characterizations insufficient. In situ and operando
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cardiovascular risk factors, including air pollution and gut microbes as well as inflammatory bowel diseases, cardiovascular function and disease development, and related mechanisms, especially oxidative stress
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | about 5 hours ago
, with the possibility of additional one-year renewals. The position is funded by the SFB/TRR 247 collaborative research network “Heterogeneous Oxidation Catalysis in the Liquid Phase” and will be jointly
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electrocatalysis: The research involves the application and development of ab initio methods, molecular dynamics and kinetic Monte Carlo simulations to model electrocatalytic oxidation and reduction reactions
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oxidation (WOR) and oxygen reduction (ORR) reactions. The research results will aim at establishing the role of S-S interfaces on the activity and the selectivity of these reactions. The materials synthesised
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dissemination, and outreach. Particular emphasis will be placed on the operation and further development of solid oxide electrolysis facilities and their integration with downstream Power-to-X processes. Expected
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£26,805 per year, and includes the PANDA DFA training programme as part of the 2026 Cohort (https://www.bangor.ac.uk/panda ). This project is linked to UK National Nuclear Laboratory (UKNNL), who will
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of diamond and gallium oxide as ultra-wide bandgap (UWBG) materials for PE applications, with a particular emphasis on the interfaces between these materials and their impact on device performance. As a