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Field
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, for green hydrogen production, highly efficient metal halide perovskite-based photovoltaics and, of course, high energy density and safer batteries for e-mobility . You will work in a highly collaborative
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industrial and transport applications still rely on combustion-based technologies due to their need for high energy densities and thermal process requirements. A promising solution lies in electrofuels (e
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activity and synaptic dynamics using high-density 3D Multi-Electrode Arrays (3D-MEAs) — done in close collaboration with experts, providing full support as you learn to analyze this data. o Multi-Omic
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development remains limited by the difficulty in obtaining crystals with high structural quality, specifically with a stacking fault density below 500/cm². The Travelling Solvent Method (TSM), which uses a
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training in first-principles electronic-structure and excited-state methods (density functional theory and the GW and Bethe-Salpeter-Equation approaches), machine learning for atomistic simulation, and high
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PhD Studentship: Advancing solid-state battery electrolyte manufacturing with terahertz spectroscopy
-generation solid-state batteries due to their improved thermal stability, reduced flammability, enhanced durability, and potential for higher energy density. However, manufacturing high-performance
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Institute of Neuroscience and physiology, Sahlgrenska Academy, university of Gothenburg | Sweden | 24 days ago
characterise the temporal relationships between amyloid, tau spreading, neurodegeneration and cognitive change across biomarker-defined disease stages. Finally, synaptic density will be quantified with [18F
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draw on RAMS’ strengths in radiological screening, density and porosity measurement, gas-accessible pore structure, surface area analysis and graphite characterisation, supported where appropriate by
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, and improve energy density and cycling performance. Polymer electrolytes for solid-state metal batteries Design and synthesis of novel solid polymer electrolytes. Improving interfacial stability
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) semiconductor technologies are enabling significant improvements in efficiency, power density, and switching performance for next-generation power conversion systems. However, fully realizing these advantages