Journal of Applied Physics · 2013 · 20 citations · 19 references
Magnetic PropertiesEngineeringElectrode-electrolyte InterfaceMagnetic MaterialsMagnetoresistanceMagnetismMagnetic Thin FilmsMaterials ScienceElectron DensityDouble Layer ChargingBattery Electrode MaterialsSurface ElectrochemistryElectrochemical ProcessMagnetic MaterialElectrochemistryUltrathin Metallic FilmsApplied PhysicsFundamental ElectrochemistryDriven VariationThin FilmsMagnetic DeviceMagnetic PropertyElectrochemical Surface Science
Controlled variation of magnetism in ultrathin metallic films by external electric fields is a promising route towards advanced multifunctional devices. In situ magnetic measurements of ultrathin CoPt films in a liquid electrolyte (LiClO4 in dimethyl carbonate-ethylene carbonate) have been performed, dependent on the applied external voltage. Huge hysteretic changes of coercivity (above 200%) and smaller variations of saturation magnetisation (∼4 %) have been identified. The commonly considered concept of changing the electron density of states by double layer charging is not applicable as the changes observed are mainly irreversible. Rather, a strong influence of redox processes, namely surface oxide reduction and Co dissolution, is considered. We argue that by exploiting these redox reactions much higher changes of the magnetic properties are achievable than for double layer charging.
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Naoto Nagaosa, Jairo Sinova, Shigeki Onoda et al. · Reviews of Modern Physics · 2010 · 4.4K citations · Full text
Electric Field-Induced Modification of Magnetism in Thin-Film Ferromagnets
Martin Weisheit, S. Fähler, A. Marty et al. · Science · 2007 · 1.2K citations
Electric Field-induced Modification, Magnetic Properties, Engineering +17
Electric-field-assisted switching in magnetic tunnel junctions
Wei-Gang Wang, Mingen Li, Stephen Hageman et al. · Nature Materials · 2011 · 1K citations