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on the production and testing of new coatings for cladding material (i.e. fuel rods) used in nuclear energy generation, that will be designed to provide increased oxidation resistance coupled with resistance
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Antimicrobial coating industry is rapidly growing. This is to prevent the serious problems caused by bacterial adhesion and subsequent biofilm formation on the surfaces of many devices. The project
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Dating back over 150 years, Beckers is a true pioneer in providing unique, high-quality solutions that answer coating needs across many sectors. Currently Beckers is proud to be the global leader in
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internal protective coating that acts to protect both the internal contents and the can itself. During coating development, simulation tests have been created to increase the speed of iteration and reduce
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within the Centre of Excellence in Coatings and Surface Engineering (CE-CSE) at the University of Nottingham and Rolls Royce. Rolls Royce produces aeroengines for civil and defence aerospace and the
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Background Applicants are invited to undertake a 4 year, fully-funded PhD studentship within the Centre of Excellence in Coatings and Surface Engineering (CE-CSE) at the University of Nottingham
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Project title: Rapid Development and Testing of Multifunctional Antimicrobial Coatings to Combat Urological Device Infections Supervisory Team: Dr Andrew R. Hamilton; Dr Ali Mosayyebi; Dr Dario
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developing methods based on synchrotron and laboratory X-ray diffraction for real-time in situ studies of thin films and coatings. You will be a part of a large cross-organizational environment focused
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Project summary This project will focus on the production and testing of new coatings for cladding material used in nuclear fuels, that will be designed to provide increased oxidation resistance
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formulations (it is made like a paint) that contain nanoparticles of different charge, one for each surface. When they are joined, electrostatic adhesion occurs. However, on their own as individual coatings