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create a sustainable world? In our multidisciplinary research team, we have a PhD vacancy in catalysts development for urea synthesis. Join our team to design and improve, in close cooperation with other
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Are you passionate about combining the directed evolution of diverse biomolecules with deep learning approaches and contributing to the development of better (bio)catalysts and drugs? We
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composition and catalyst structure affect performance during transient Fischer–Tropsch synthesis (FTS). In this project, you will focus on understanding how variations in CO/CO₂/H₂ ratios and the presence
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aromatics and specialty chemicals. In this project, you will design and study catalytic processes that upgrade complex phenolic mixtures into targeted products using advanced bifunctional catalysts. By
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of robust novel hydrogenation catalysts as well as new, widely applicable photochemical tools. All projects have dual, applied and fundamental, character. Various new concepts in catalysis and photochemistry
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. However, harmful contaminants present in such waste streams (e.g., halogens, metals, and nitrogen compounds) can cause equipment corrosion, catalyst deactivation, and compromise product quality. We
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transition and catalytic conversion of carbon-based feedstocks? We are looking for a motivated PhD candidate to investigate how feedstock composition and catalyst structure affect performance during transient
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into valuable aromatics and specialty chemicals. In this project, you will design and study catalytic processes that upgrade complex phenolic mixtures into targeted products using advanced bifunctional catalysts
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of electrocatalytic systems for H2O oxidation to H2O2, H2O reduction to H2 and NO3- reduction to NH3, in close connection to the catalyst development efforts in the consortium. Using operando XPS and soft XAS, you will
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, and nitrogen compounds) can cause equipment corrosion, catalyst deactivation, and compromise product quality. We are developing and evaluating innovative technologies to remove these contaminants in