Abstract:At the surface of
iron oxide nanoparticles, an oxidized
or disordered
layer is often found. Due to the large surface-to-volume ratio of
nanomaterials, such a surface layer plays an important role in the
overall magnetic properties of the particles. Consequently, it is
important to characterize the surface layer if applications of iron
oxide nanoparticles, e.g., for magnetic hyperthermia, magnetic particle
imaging, or ferrofluidics, are envisaged. In this work, we tuned the
phase of the surface layer of 14 nm i… Show more
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