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Defining key structural and magnetic parameters for standardising magnetic Fe-oxide nanoparticles for biomedical applications

Abstract: The enormous research in magnetic nanoparticles is due to their appealing size-dependent physical properties. On top of that, promising applications are coming over. One of the more promising and at the same time regulated one, is the utilisation of nanosystems to cure and prevent illnesses. For these biomedic applications, it is mandatory to define the structural and magnetic arrangements of the nanoparticles to then select the key parameters to establish a safe standard. We have carefully selected a group of 4 freeze-dried magnetite/maghemite powders in which we have already performed an exhaustive laboratory characterisation. Our aim is to exploit the unique capabilities of neutron diffraction and define the structural and magnetic structures to compare with previous magnetisation, Mossbauer, TEM and XRD results.

Experiment Parameters Environment temperature 2-300 Experiment energy 2.41 //1.594 \AA{} Sample Parameters Formula Fe3O4 5 nm Fe3O4 10nm @SiO2 Fe3O4 10nm@DMSA Fe3O4 80nm

Repositorio: ILL Institut Laue-Langevin

 Año de publicación: 2015

 DOI: 10.5291/ILL-DATA.5-31-2427

 Citación completa: Alba Venero, D., Bender P., Espeso J. I., Fernandez Barquin, L., Fernández Díaz, M. T., González Alonso, D. & Pankhurst, Q. A. (2015). Defining key structural and magnetic parameters for standardising magnetic Fe-oxide nanoparticles for biomedical applications. [Dataset]. (Version 1). Institut Laue-Langevin (ILL). http://dx.doi.org/10.5291/ILL-DATA.5-31-2427

Autoría

ALBA VENERO, D.

BENDER, PHILIPP

FERNANDEZ DÍAZ, MARÍA TERESA

GONZÁLEZ-ALONSO, D.

PANKHURST, QUENTIN A.