Abstract
This paper highlights recent advances in synthesis and magnetotransport properties of magnetic Co nanoparticles. It is shown that magnetic Co nanoparticles self-assembled in nanoparticular monolayers revealing giant magnetoresistance similar to granular systems but with additional features resulting from dipolar interactions between small domains of nanoparticles. A spin-valve with one magnetic Co nanoparticular electrode is employed as a model to demonstrate that individual magnetic moments of Co nanoparticles can be coupled to a magnetic Co layer which in turn offers tailoring of the resulting giant magnetoresistance characteristics. In addition, it is demonstrated that combining a magnetic on-off ratchet with magnetic tunneling junctions integrated in the ratchet introduces a new biosensor concept enabling: (1) simultaneous transporting and separating biomolecules, (2) dynamical biomolecule detection when passing magnetic tunneling junctions in a 1D arrangement. It is projected that this biosensor concept could be applied for viruses as well as for bacteria.
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CITATION STYLE
Ennen, I., Albon, C., Weddemann, A., Auge, A., Hedwig, P., Wittbracht, F., … Hütten, A. (2012). From magnetic nanoparticles to magnetoresistive biosensors. In Acta Physica Polonica A (Vol. 121, pp. 420–425). Polish Academy of Sciences. https://doi.org/10.12693/APhysPolA.121.420
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