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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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catalytic process. In addition, it is important to improve the student the experimental skill, materials characterization skill and data analysis skill. Student who joins our group will learn the fundamentals
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Predicting the dynamic response of materials and structures to high energy ballistic impacts is a fundamental component of the development and design of fit-for-purpose armour and protection
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) position as part of the CoCoGel (“Controlling Colloidal Gels for Novel Sustainable Materials”) Marie Curie Industrial Doctoral Training Network. This is a high-profile position that offers exceptional
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. These materials will be discussed as part of a presentation and an interview about their suitability for this scholarship.
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vast range of ambient temperatures in which these systems need to operate without thermal distortion. However, additive manufacturing gives the unique opportunity to tailor the material properties, and
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) position as part of the CoCoGel (“Controlling Colloidal Gels for Novel Sustainable Materials”) Marie Curie Industrial Doctoral Training Network. This is a high-profile position that offers exceptional
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to study the dispersive behaviour of different sterilant formulations during the decontamination of materials with complex geometries and the disinfection of large spaces. The dispersive behaviour
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their fundamental constituents, such as lipids and proteins, evolve at the nano-scale. Continuum modelling approaches have been able to improve the understanding of the behaviour of biological materials, showing
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PhD Studentship: Molecular Simulations and Data-driven Modelling for Polymer Nanocomposite Membranes
applications. However, optimizing MMMs for efficient gas separation remains a challenge, due to the many factors that influence the membrane performance, such as size, shape, surface chemistry, and loading