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Conservation Research Unit in the Life and Mind Building, South Parks Road, Oxford, OX1 3EL, with regular travel to southern Africa. The post holder will undertake research focused on technological innovation
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for developing and running adversarial evaluations; designing and validating mitigation strategies (system-level controls, training-time or post-training defences, and deployment safeguards); publishing results in
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and improved reaction conditions, design and implement end-to-end workflows integrating AI/LLM models with automated experimental platforms and computational chemistry tools, prototype and evaluate
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in the design of bespoke sonochemical reactors and the study of sonochemical reaction engineering. We excel at controlled experiments aimed at determining the driving forces for optimally efficient
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should hold a relevant PhD/DPhil (e.g. Tissue Engineering, Biomaterials, Biochemical Engineering) or be near completion*, together with experience in 3D cell/tissue culture, bioreactor design or perfusion
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. You will work on building a biocatalytic cascade for peptide-oligonucleotide conjugate (POC) synthesis. You will (i) design and generate a library of designer nucleic-acid modifying enzymes
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conjugation, lipid coupling, and the development of tailored molecular probes. You will work extensively with analytical techniques such as NMR and MS and contribute to our fragment-based drug design efforts
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in the design of bespoke sonochemical reactors and the study of sonochemical reaction engineering. We excel at controlled experiments aimed at determining the driving forces for optimally efficient
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the tunability and cell permeability of small molecules. Working with members of the Lovell lab, the successful candidate will contribute to the development of next-generation macrocyclic inhibitors designed
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vaccine innovation, this role offers a unique opportunity to contribute to world-leading research with real-world impact. This position is offered full-time on a fixed-term contract initially for 2 years