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their application eligibility will be determined on a case-by-case basis. The start date is October 2026. Tidal stream power is a highly dense, predictable, renewable energy source. Following the successful operation
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hazardous precious metal catalysts. Delivered high-performing biocatalysts Engineered industry-ready enzymes suitable for large scale pharmaceutical manufacturing. We’ve also helped shape national policy. In
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extreme threats to national security. AWE has pioneered advancements in areas including physics, engineering, materials science, and high-performance computing. Together we’ve helped shape the UK’s
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strongly influence molecular properties such as stability, lipophilicity, permeability, and biological performance. However, the fluorinated motifs most widely used today represent only a narrow part of
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control performance and efficiency. This PhD project focuses on data-driven analysis of confined liquids structure, informed by total neutron scattering. The emphasis is on developing new analysis
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improve the corrosion performance of wrought high strength aluminium alloys in response to this demand and to formulate these alloys from end-of-life recycled aluminium to reduce embedded carbon level to
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up to a £5k/annum research training support grant for the full duration of the 4-year programme. Metal-ligand multiple bonding is a burgeoning area for making chemically novel structural motifs
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; Nat. Mater. 2018, 17, 691). This project builds on this experience, aiming to investigate new MOFs that incorporate highly rigid, chelating linkers (for high material stability). After initial sorption
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for pharmaceutical bioprocessing and biomedical applications. Due to their high chemical stability, bright and tunable fluorescence, water solubility, and facile, green synthesis from renewable precursors, C-dots
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create a robust and versatile materials platform that supports long-acting delivery, while developing fundamental insight into polymer structure–property–performance relationships. The student will