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Forschungsgemeinschaft (DFG). Our goal is to achieve atomic-precision synthesis and exploration of new planar carbon lattices (PCLs) for next-generation quantum materials, functional precision membranes, optoelectronic
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is to achieve atomic-precision synthesis and exploration of new planar carbon lattices (PCLs) for next-generation quantum materials, functional precision membranes, optoelectronic and electrochemical
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protocols for electrical biasing of samples in the microscope. A key task is to process and analyse large 4D-STEM data sets and extract information about domain wall structure and dynamics. The role involves
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universities, and three research and technology organizations. This PhD project is focused on glass cutting, where large, laminated glass panels are cut to sizes for window production. The process involves pre
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The candidates will design, develop and measure multi-qubit devices, where they will learn a wide range of techniques from single atom manipulation, device processing and optical measurements
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paramount importance to multiple industrial fields. The presence of these oxide films alters the charge carrying characteristics when electro-magnetic fields are applied and can lead to localised electrical
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devices, and offers the potential to advance long-duration in-body diagnostics and therapeutic monitoring. The doctoral candidate will lead the design, fabrication, and characterisation of the TENG, and
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Supervisor details: Lead Supervisor Jonathan Dale, j.j.dale@reading.ac.uk , GES Co-supervisors Rob Fry, r.j.fry@reading.ac.uk , GES Project description: Many areas of saltmarsh were historically
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of Lithium Iron Phosphate Batteries - These projects aim to establish effective and sustainable approaches for the direct regeneration and component-level recovery of spent LFP batteries, focusing
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energy levels and size-tuneable optical and electronic properties. QDs can self-assemble into larger, ordered structures analogous to atomic crystals. However, these are typically restricted to close