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. Develop and optimize radical coupling reactions, including reaction design, selectivity, efficiency and substrate-scope evaluation. Plan protecting-group strategies and control chemoselectivity
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, and optimize multimaterial LPBF processes, integrating in-situ monitoring, process parameters, material combinations, and resulting microstructural and structural outcomes. Design and optimize
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to investigate light absorption and emission, charge-carrier dynamics and transport, defect states, local energetic landscapes, and spatial heterogeneity. • Develop, optimize, and operate advanced optical
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the conversion of CO2 into value-added chemical products. Roles & Responsibilities: • Design, synthesize, and optimize catalysts for CO2 hydrogenation to useful chemicals. • Conduct catalytic testing
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The Signature Research Programme in Neuroscience and Behavioural Disorders (NBD) is focused on understanding the structure and function of the nervous system, and the neural mechanisms underlying
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The successful candidate will work with Asst. Prof. Shen Shuting on combinatorial inference under a project on "Post-learning inference for near-optimal discrete structures". The main
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. The postdoc will engage in research including, but not limited to, the following areas: • Mixed-Integer Linear / Quadratic Programming for large-scale decision-making problem • Non-Convex Optimization and
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• Conduct research on the design, fabrication, and characterization of advanced composite materials for additive manufacturing. • Develop, optimize, and evaluate material
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materials, the design and construction of optoelectronic devices, as well as characterization and testing. The main objectives include: 1. Controllable synthesis of high-quality 2D materials and
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of spintronic THz source activated selectively in an arbitrary spatial pattern using spatial light modulators. Methodology: involves working on three integrated verticals: (i) Optimization of FM/HM