Disentangling the core/shell nanoparticle magnetization and unraveling the pinning processes at the interface
Core/shell magnetic nanoparticle systems (NPs) exhibiting different magnetic orders and the structural mismatch between core and shell will be studied by employing half-polarized small-angle neutron scattering (SANSPOL). The main objective is to unravel the nature of the core/shell interface and magnetic morphology of these complex systems through analysis of the pure nuclear scattering and nuclear-magnetic interference term, respectively, and to investigate in detail the magnetic response of these systems with complex architecture for different structural mismatch and different magnetic order between phases. The results of our approach will ultimately uncover the entanglement between the macroscopic response (exchange-bias) and the core/shell structure (magnetic order and structural mismatch). Revealing the correlation of the magnetic order and structure with the exchange-bias coupling is highly important for the explanation of relaxation effects, technologically relevant for, e.g., magnetic hyperthermia and the magnetic microstructure.
The data is currently only available to download if you are a member of the proposal team.
The recommended format for citing this dataset in a research publication is in the following format:
ZAKUTNA Dominika; J Campo; GERINA Marianna; HRICOV Stefan; RUMI Gonzalo Agustin; STEINKE Nina-Juliane and TOBIA Dina. (2023). Disentangling the core/shell nanoparticle magnetization and unraveling the pinning processes at the interface. Institut Laue-Langevin (ILL) doi:10.5291/ILL-DATA.5-42-578
This data is not yet public
This data is not yet public