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About the project: The thinnest sensors: 2D materials in liquid solution Supervisor: Dr Peter Brommer, University of Warwick Two-dimensional materials, such as graphene, could be used in molecular
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applications. The research project aims to explore the integration of 2D materials, such as graphene and post-graphene structures, into PFAS-free formulations to develop multifunctional coatings for porous
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project is to overcome these limitations through the design of a flexible, quantum sensing foil based on an atomically-thin two-dimensional (2D) material. Our approach consists in using optically-active
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or upper second-class honours degree (or international equivalent) in Materials Science, Chemistry, Chemical Engineering, Metallurgy, Physics, Electrochemistry, or a related discipline. Experience in
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An investigation into the interface material layer created during linear friction welding of Titanium alloys. Applications are invited for a PhD position at the University of Nottingham addressing
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An investigation into the interface material layer created during linear friction welding of Titanium alloys. Applications are invited for a PhD position at the University of Nottingham addressing
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to how well they meet the following criteria: A first class (or strong 2:1) degree in any of Engineering, Materials Science, Computer Science, Physics, Biology/Biotechnology, Chemistry/Biochemistry
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An investigation into the interface material layer created during linear friction welding of Titanium alloys. Applications are invited for a PhD position at the University of Nottingham addressing
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interactions in layered 2D materials. This method gives direct access to certain material properties, especially the quantum capacitance, or to the kinetic inductance of a superconductor. In more complex
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broadleaved trees for sustainable forests, materials and energy. The doctoral student will join a multidisciplinary forest research environment and work with academic, public- and private-sector partners