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Start date: 29/09/2024 Type of opportunity Fully-funded studentship - Opportunities which are fully funded (e.g. covers all fees and stipend) Eligibility & Related Project Details Type of studentship: PhD Fee status of eligible applicants: UK and International Duration of Award if full time...
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100%, Zurich, fixed-term The Laboratory of Energy Science and Engineering (LESE, ETH Zürich) is looking for a candidate to fill a PhD position to develop catalysts for the conversion ofCO2
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development of these solutions, particularly catalyst degradation. We propose to develop a comprehensive model coupling all the phenomena required to simulate catalyst degradation during cycling at potentials
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cheminformatics. Our ultimate goal is the computer-aided design of molecules and especially catalysts. Project background Catalysts are needed to produce the large amounts and types of chemicals that we use in
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Your Job: As PhD student you achieve fascinating insight into catalyst interfaces with the following tasks: Synthesis of model catalyst interfaces Participation in neutron scattering experiments
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related to staff position within a Research Infrastructure? No Offer Description Project description Third-cycle subject: Electrochemistry Copper and copper-based materials are promising catalysts
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affordable catalysts is inhibiting this transition. Your project will use the power of advanced X-ray spectroscopic techniques to understand how the abundant alkali elements can be used to make effective
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of energy, environment, safety, health, communication and mobility. The Chemical Energy Storage department works on tasks relating to catalyst development. Within the Carbon2Chem project, catalysts
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We are seeking a highly motivated PhD student to work on stable CO2 hydrogenation catalysts using atomic layer deposition. Within the endeavour of the energy transition, it is essential to develop
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of the highest-ranked universities in Europe. The advertised PhD position is funded within our ERC project on the dynamics of cluster catalysts under reaction conditions. Project Description Size-dependent