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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | 22 days ago
the research project: "Smart multicomponent catalysts for CO₂ valorization", carried out on behalf of the National Science Center SONATA 19 (grant no. 2023/51/D/ST4/00339) in the Division of Nanomaterials
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About the project: Supervisor: Professor Nicholas Hine, University of Warwick This project uses cutting-edge computational and machine learning methods to accelerate catalyst discovery for fuel cell
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Your Job: Design and development of an in-house X-ray beamline for long term operando investigation of chemical hydrogen storage reactors Unravelling of relationships between catalyst structure and
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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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alcohols. Interestingly, the catalysts used for both alcohol dehydration and alkoxycarbonylation, along with their operating conditions, highlight the potential to combine these two reactions into a single
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hazardous precious metal catalysts. Delivered high-performing biocatalysts Engineered industry-ready enzymes suitable for large scale pharmaceutical manufacturing. We’ve also helped shape national policy. In
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Your Job: Create a novel catalyst design, based on state-of-the-art thin film technologies and subsequent delamination of atomically defined oxides. Demonstrate the transfer process for
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: Department of Chemistry Position Summary: Support a project focused on the design, synthesis, and catalytic applications of Group III nitride materials (e.g., GaN, InN, AlN). Catalyst synthesis and
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investigating degradation mechanisms within the framework of green energy conversion and climate change. The open position aims to understand catalyst stability at the nanoscale during electrochemical processes
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– scholarship position available in the Institute of Physical Chemistry PAS within FENG.02.02-IP.05-0063/25 „Smart Engineering of Catalysts for Hydrofunctionalization Reactions: From Selectivity Control to a