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well as fuel cells. Your main responsibilities include: Synthesis and characterization of catalyst particles for electrochemical hydrogenation and dehydrogenation of liquid organic hydrogen carrier (LOHC) in
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supercritical reaction conditions Working with commercial and academic catalysts Kinetic investigation & modelling of supercritical steam reforming Integration of experimental results into reactor and process
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in sustainable technologies, such as water- and CO2-electrolyzers, as well as fuel cells. Your main responsibilities include: Synthesis and characterization of catalyst particles for electrochemical
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Your Job: You will be part of a research team that applies high-throughput experimentation to accelerate research in the emerging field of electrocatalysis. Production of catalyst inks is one
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simulation of technical systems Interest in practical work with catalysts, laboratory setups and pilot-scale plants Ability to analyse complex interrelationships and work methodically Good written and spoken
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field of electrocatalysis. Production of catalyst inks is one of the first steps along the development chain to new energy devices like fuel cells and electrolyzers. You will integrate and operate
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hydrogen release by means of pressure control Carrying out parameter studies Comparison of different catalyst materials Determination of the pressure dependence of the dynamic hydrogen release Development
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on transforming nitrogen pollutants from water and air into valuable ammonia. This project offers the chance to be at the forefront of sustainable chemistry by developing cost-effective and efficient catalysts
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Your Job: Catalyst synthesis and characterization: Prepare inorganic catalysts via wet-chemical methods and perform detailed chemical and physical analyses using XRD, XPS, SEM, TEM and Gas sorption
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techniques to study degradation processes, including electrocatalyst dissolution Mechanistic understanding of catalyst degradation processes in PEM, AEM, and alkaline water electrolysis Implementation of AI