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, advanced functional materials, and deformable energy-harvesting devices. The successful candidate will focus on mixed ionic–electronic conducting (MIEC) materials and their integration into soft
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energy-harvesting devices. The successful candidate will focus on ionic thermoelectric materials and electrochemistry, developing and investigating advanced electrolyte and redox-active material systems
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-ion batteries. The project involves formulation of electrolytes, assembly and testing of battery devices. The project requires extensive use of characterization techniques including electrochemistry
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has important applications for structural materials used in nuclear installations and other irradiation environments. In future fusion devices and fast reactors, light-ion emission can lead to gas
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interconnects in multilayer devices -identify and optimise polymers and photosensitive materials for additive manufacturing -establish femtosecond or picosecond laser micro-drilling and selective metallisation
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. EISLAB is responsible for the packaging technology developed here. Duties Your main tasks are to: -develop additive techniques for patterning micro- and nanoscale metal interconnects in multilayer devices
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Swedish, spoken and written good computer skills Meritorious for the position are: demonstrated competence in, or methodological orientation toward, qualitative research methods and theory development
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, reaction mechanism investigation, and optimization of catalytic performance at both the material and device levels. The PhD student is also expected to contribute to the development of new research
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higher education credits (ECTS). Relevant courses include, for example, image processing, computer vision, machine learning, deep learning and neural networks, as well as courses in Python, GPU programming
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routes and scaffolds for device integration. The work will explore approaches such as fluidics, enzymatic modulation, electroporation, and diffusion-driven transport, and may involve the development