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Field
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. Nanoplastics, defined as plastic particles measuring less than 1000 nanometres, have emerged as a significant concern due to their ability to infiltrate ecosystems, posing potential risks to the environment
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Funding providers: EPSRC and Swansea University's Faculty of Science and Engineering Subject areas: Polymer and Glyco Chemistry, Biomaterials, Antimicrobials Project description: A significant
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antimicrobial coatings. To undertake this research, we are seeking a highly motivated candidate with established hands-on experience in materials, nanotechnology, chemistry, or biology.
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properties.Researcher profile: Doctoral candidate.Research field: Food Microbiology, Molecular Microbiology, Analytical Chemistry, Biotechnology, Biochemistry, Bioinformatics.Type of contract: Temporary.Job status: Full
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the different chemistries used in both radcure and thermal curing affect the inter-coat interface, and consequently what effect this has on adhesion. This has the potential to bring about new formulations with
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development strategies focus on alloy chemistry designs and targeted thermo-mechanical treatments to achieve a fine martensitic microstructure, and even more importantly, to tailor the chemistry, size and
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, chemical and biotech industries. If you have a strong background in computational chemistry, physics, mathematics or a related area, then this is the project for you! With access to large collections
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As the largest organ of human being, skin acts as a barrier to the external environment, and accommodates a diverse microbiota comprised of bacteria, fungi, viruses, and microeukaryotes. Most
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and improving system design to mitigate degradation is essential. This project will explore novel materials for electrodes and the electrolyte of PCCEL investigating activity and durability. Material
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Plastic pollution represents a global environmental challenge. The larger plastic particles can degrade to produce/release nanoplastics (NPs) that can enter the tissues of aquatic organisms. For example, up