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PhD Position – Development of metal-organic frameworks-glass composites for sustainable applications
to staff position within a Research Infrastructure? No Offer Description This is a PhD project focused on the design, synthesis, and advanced structural characterisation of MOF-glass composites
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Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological
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stabilising structures iv. AI-enabled structural analysis, optimisation and design tools for high-efficiency, low-carbon composite building systems Plan and conduct experimental work, including but not limited
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.2024.102407 . Context: Nacre – an arrangement of Aragonite platelets with an organic matrix in a “brick-and-mortar” structure – is one of many naturally textured composites whose organisation induces
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responsibilities of the candidate in this position will include conducting research on innovative polymer and composite materials with protective properties. Specifically, the research will include analyzing
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, PhD.) 8. Structure and properties of lead-free ferroelectric ceramics (supervisor: RNDr. Vladimír Kovaľ, DrSc.) 9. Properties of soft magnetic composites based on structurally modified ferromagnetics
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of varying composition, ranging from phospholipids to free fatty acids. The candidate will isolate β-cells from pancreatic islets and determine their lipid composition using lipidomics (in collaboration with a
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lightweight structures and composites engineering. The Bristol Composites Institute (BCI) was established in 2017, building on the work of the Advanced Composites Collaboration for Innovation and Science
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for 30 hours/week. Expected start: May 2026. Tasks: Research in the field of inorganic composites with a focus on innovative and sustainable processing and material concepts Investigation of process
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details Supervisors: Dr Oksana Trushkevych and Prof Tony McNally Research area and project description: Develop scalable acoustic methods to structure advanced polymer composites for lightweight, low‑carbon