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New permanent magnets for power applications to solid-state energy efficient magnetic cooling, ferromagnetic shape memory alloys, magnetic nanoparticles for biomedical applications, solid-state hydrogen storage materials with a particular emphasis on tailoring structural and chemical properties on the nanoscale and their multi-scale characterisation and modelling. Materials are synthesised by advanced processing incl. non-equilibrium, field-assisted, severe plastic deformation and additive manufacturing methods. The criticality of strategic metals for the energy transformation and the resource efficiency on element, process and product levels as well as their recycling.
New permanent magnets for power applications to solid-state energy efficient magnetic cooling, ferromagnetic shape memory alloys, magnetic nanoparticles for biomedical applications, solid-state hydrogen storage materials with a particular emphasis on tailoring structural and chemical properties on the nanoscale and their multi-scale characterisation and modelling. Materials are synthesised by advanced processing incl. non-equilibrium, field-assisted, severe plastic deformation and additive manufacturing methods. The criticality of strategic metals for the energy transformation and the resource efficiency on element, process and product levels as well as their recycling.
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JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS (2024): 171721
ADVANCED ENERGY AND SUSTAINABILITY RESEARCHno. 1 (2024): n/a-n/a
SMALLno. 21 (2024): e2208098-e2208098
Acta Materialiapp.119871, (2024)
Journal of Alloys and Compoundspp.174490, (2024)
CHEMISTRY OF MATERIALSno. 3 (2024): 1375-1384
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