Sort by
Refine Your Search
-
for high-temperature applications. The research includes a multifactorial analysis of the relationships between chemical composition, manufacturing technology, microstructure, mechanical properties, and the material's
-
linking: PVD process → thin-film morphology → electrode microstructure → electrochemical behaviour → full-cell performance The two successful candidates will investigate how the morphology and physical
-
, Lab-4DµXRD, and to apply this technique to quantify local microstructural evolution during mechanical loading. The work will lay a strong foundation for the application of this novel characterization
-
design workflows for nanoporous carbon electrodes for sodium-ion batteries. The objective is to accelerate the exploration of virtual carbons with varied microstructures by combining numerical structure
-
composition, processing, microstructure and performance, with particular emphasis on durability and reliability under extreme space environments. Research objectives The project will investigate the development