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Field
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excellent problem-solving and technical skills. Prior experience in electrochemistry and/or catalysis is a strong advantage. The successful candidate will be expected to work independently in the lab while
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responsibilities, demonstrating strong small-scale project management skills. The project requires expertise in surface science, in particular in atomic layer deposition (ALD) and/or catalysis, coupled to operando
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. The Department of Chemistry (DTU Chemistry) conducts research, education and innovation in areas such as energy, life science, catalysis and materials. DTU Chemistry is particularly distinguished by scientific
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organometallic chemistry and in homogenous catalysis would be an asset (but not mandatory). We are looking for a dedicated, experienced and highly motivated candidate. Moreover, the candidate should have good
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materials will subsequently be applied in catalysis and adsorption in large scale. The candidate will primarily focus on extracting and purifying metals from an inorganic matrix by-product, which will then be
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strong expertise and interest in developing MOFs and their composites for catalysis. The job vacancy involves designing, synthesizing, and characterizing highly catalytic active MOF composites
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applications, including fine chemistry, catalysis, agriculture, and life science. For instance, phosphorus-based chemicals are essential in hydrometallurgy, ceramics, and serve as building blocks for RNA and DNA
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environmental conditions relevant to catalysis and PEC operation. · Work closely with national and international collaborators by offering hands-on support and guidance for in-situ TEM experiments. · Train
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of metal ions and their influence on the action of antimicrobials, in particular antifungals. Project description: Our work focuses on studying the intersection of metal ions, catalysis, and metabolic
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AIix-Marseille University/A*MIDEX | Marseille, Provence Alpes Cote d Azur | France | about 2 months ago
University Foundation, aims to develop self-assembling and water-soluble artificial mini-proteins with bioinspired heme&Trp redox cofactors for targeted catalysis, and resulting in novel versatile catalysts