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highly motivated Post‑Doctoral Research Associate to join the research group of Dr Liam Donnelly. This project aims to transform how homogeneous catalysts are discovered and optimised by combining state
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are the development of catalytic reactions for organic synthesis, and the development of catalysts for light- and electricity-driven separations. This individual will be responsible for chemical synthesis and
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . This position supports research activities in electrocatalysis and
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analysis methods for realistic CO2 electrocatalysis, with a focus on parallel investigations and accelerated aging. Dissect degradation processes of CO2 electroreduction catalyst, electrodes, and ionomer
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Posting Details Student Title Classification Information Quick Link https://chapman.peopleadmin.com/postings/39508 Job Number SE191624 Position Information Department or Unit Name Chemistry Position
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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 05, le de France | France | 9 days ago
as sustainable catalytic alternatives to noble metal catalysts.[1] Rather than relying on metal-centered redox chemistry, these systems typically benefit from strong Brønsted basicity and
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Framework Programme? Not funded by a EU programme Reference Number 172899 Is the Job related to staff position within a Research Infrastructure? No Offer Description Synthesize catalysts from agro-industrial
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renewable energy in a dense and usable form. However, the thermodynamic and kinetic barriers associated with CO₂ reduction require the development of high-performance and selective catalysts. The selected
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 8 days ago
) Vacancy ID: NF0009670 Salary Range: $62,115 - $70,000 Position Summary/Description: The Operational Excellence (OE) Team at the University of North Carolina at Chapel Hill acts as a catalyst for change and
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interdisciplinarity: it combines both, experimental and theoretical expertise, spanning from the investigation of surface plasmons and the design of nano-structured catalyst materials to density functional theory