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pioneering research in the natural sciences, social sciences and the humanities that benefit humankind and our planet. The foundation serves as a catalyst for scientific and human progress by supporting
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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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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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, Sustainability, Environment, and Health—complemented by interdisciplinary Interest Groups, serving as catalysts for emerging ideas. This dynamic structure makes our School an exciting place to work and collaborate
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generations of transition metal catalysts and reagents for novel organic transformations. The Research Fellow will take on a significant role in conduct cutting-edge research in transition metal catalysis and
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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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include: • Method development • Chiral catalyst development • Application for bioactive compound synthesis Qualifications / Discipline: • PhD in Organic Chemistry Skills: • Transition metal
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aligned with the aims of the Terascale project. Develop and apply suitable methodologies for research for AI for science and catalyst discovery. Design, implement, and evaluate novel models, algorithms
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is preferred. 3. Experience in chemical reaction engineering, hydrogen production, or gas separation processes is an advantage. 4. Familiarity with catalyst and membrane characterization