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materials as electrolytes, and batteries built without bulky anode materials, commonly known as “anode-free” batteries. As part of a larger research project in collaboration with the National Taiwan
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research subject of Building materials consists of 15 people. The subject focuses on the development of sustainable materials and production technologies for the construction industry, as well as on ice and
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and innovation. (https://liu.se/loe ) You will work within the newly established Computational Materials Science group of Assistant Professor Waldemar Kaiser, part of the Theory & Modelling unit (led by
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staff position within a Research Infrastructure? No Offer Description We are now looking to appoint a PhD student in Mixed Ionic–Electronic Materials for Thermal Energy Harvesting, placed
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, both as a researcher and as a person. The research subject of Building materials consists of 15 people. The subject focuses on the development of sustainable materials and production technologies
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–electronic materials, and soft electronics to explore new approaches to thermal energy conversion. The project spans fundamental materials and transport phenomena, advanced functional materials, and deformable
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focused on research and development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel electrode and electrolyte materials
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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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Laboratory has for many years hosted a research environment focused on the development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel
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micromachining, selective metallisation and new photosensitive materials, without high-temperature sintering and with minimal material waste. The work is experimental, carried out in our own laboratories together