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multicomponent materials based on reducible oxides and metallic or bimetallic nanostructures and thin films. The applicant’s research will focus mainly on so-called model studies of such well-defined materials
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PhD student position on development of innovative bifunctional oxygen electrodes for SOC technology.
announces a researcher position (R1.4) in the field of energy devices based on solid oxide cells technology. The candidate will work on developing new materials and processing very focused on the development
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programme on development of direct ammonia solid oxide fuel cells. This programme represents a new and timely collaboration between the United Kingdom and Singapore and will be based at Imperial Global
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of the ethane-oxidation process from an anaerobic microbial enrichment, thereby breaking the accepted metabolic model of archaeal alkanotrophy. Each successful candidate will join our effort to pioneer
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of the ethane-oxidation process from an anaerobic microbial enrichment, thereby breaking the accepted metabolic model of archaeal alkanotrophy. Each successful candidate will join our effort to pioneer
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(bacillithiol), which is a key antioxidant compounds used to maintain the cellular redox balance. Under oxidative stress, bacillithiol becomes oxidised and regenerated by a bacillithiol disulfide reductase
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with other histone PTMs. This work will provide atomic-scale insights into oxidative chromatin regulation and open perspectives for understanding redox-dependent epigenetic mechanisms and future
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loading regimes (i.e. quasi-static, fatigue and impact) and in presence of environmental effects, for example driven by temperature variation, moisture uptake and oxidation. This will entail working across
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materials to completely oxidize the VOCs or partially oxidize them to obtain soluble compounds in the Terrao® exchanger. The thesis aims to develop and optimize catalysts for these two treatment pathways
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experience in battery materials will be essential. Main duties and responsibilities Use mechanochemical methods to target the synthesis of rock salt and spinel structured materials in lithium manganese oxides