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access to the Bernard Field Station. While pursuing their own independent research/creative practice, we expect the fellow to act as a catalyst for conversations among faculty, staff, and students
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highly porous ZnOx/CuOy-based catalysts capable of utilizing light and electrical activation to drive efficient and sustainable urea synthesis. Its key objectives include enhancing faradaic efficiency
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particular emphasis on nanoalloy catalysts and their structure–property–performance relationships. • Strong understanding of reaction mechanisms, active-site behavior, and catalyst deactivation pathways under
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://www.ntu.edu.sg/cceb) The Huiling Shao (Asst Prof) research group aims toward computational design of new organometallic catalysts and peptide drugs via: 1. Comprehensive mechanism elucidation via
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on developing AI-driven methods for catalyst and materials discovery, atomistic simulations, and data-driven understanding of complex energy systems. Key Responsibilities: Research Outputs: Expected to lead 1–2
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, and development their professional network and career growth. The main project objectives are: Design efficient nanoscale catalysts and robust mechanochemical process to recycle PET into monomer
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leader in the research project - “Mass production of low-cost high-efficiency catalysts for Anion Exchange Membrane Fuel Cells (AEMFCs)”. Qualifications For the post of Postdoctoral Fellow, applicants
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analysis Analysis and presentation of electrochemical data Design and optimisation CO2 electrolyser from lab scale to 100 cm2 Investigate materials (electrode substrate, membrane and catalysts) Synthesis and
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combined with first principles and multiscale simulation for the design of molecules, catalysts and materials, with applications in clean energy and decarbonisation AI for clinical and health research using
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blocks into useful fuels and chemicals. To this end, our team specializes in rational photo(electro)catalyst design to increase device efficiency and steer product selectivity, moisture encapsulation