| Literature DB >> 29152806 |
Bastian Trepka1, Philipp Erler2, Severin Selzer2, Tom Kollek1, Klaus Boldt1, Mikhail Fonin2, Ulrich Nowak2, Daniel Wolf3, Axel Lubk3, Sebastian Polarz1.
Abstract
Semiconductors with native ferromagnetism barely exist and defined nanostructures are almost unknown. This lack impedes the exploration of a new class of materials characterized by a direct combination of effects on the electronic system caused by quantum confinement effects with magnetism. A good example is EuO for which currently no reliable routes for nanoparticle synthesis can be established. Bottom-up approaches applicable to other oxides fail because of the labile oxidation state +II. Instead of targeting a direct synthesis, the two steps-"structure control" and "chemical transformation"-are separated. The generation of a transitional, hybrid nanophase is followed by its conversion into EuO under full conservation of all morphological features. Hierarchical EuO materials are now accessible in the shape of oriented nanodisks stacked to tubular particles. Magnetically, the coupling of either vortex or onion states has been found. An unexpected temperature dependence is governed by thermally activated transitions between these states.Entities:
Keywords: hollow nanostructures; magnetic semiconductors; nonaqueous sol-gel process; shape-property relationships; vortex magnetism
Year: 2017 PMID: 29152806 DOI: 10.1002/adma.201703612
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849