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of organic synthetic chemistry you will develop novel catalysts based on carbon surfaces (such as graphene and its derivatives) and investigate applications of these catalysts towards transformation of bio
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molecular metal catalysts for the synthesis of polycarbonates from CO₂ and bio-sourced molecules. Organic and organometallic synthesis Physicochemical characterization Catalytic testing The recruited
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analytical techniques for adsorbent. catalyst and product characterization. Knowledge of process modeling software (e.g., Aspen Plus, COMSOL, or equivalent) is a plus. Excellent written and oral
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simulation of technical systems Interest in practical work with catalysts, laboratory setups and pilot-scale plants Ability to analyse complex interrelationships and work methodically Good written and spoken
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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information, please refer to the following link: https://csrs.riken.jp/en/labs/cucrrt/index.html * details of the business RIKEN is Japan's largest and most comprehensive research organization for basic and
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Design and synthesis of advanced heterogeneous catalysts for sustainable petrochemical transformations School of Mathematical and Physical Sciences PhD Research Project Self Funded Dr Marco Conte
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characterize the synthesized catalysts and their application potential. Therefore, the multidisciplinary nature of this research project will be a significant asset to the training of the young researcher who
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environment for reactors in serial production for operando studies Operando investigation of catalyst structures using high energy X-ray methods (scattering, spectroscopy, imaging) using in-house- and