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Voltage-controlled ON-OFF ferromagnetism at room temperature in a single metal oxide film

Authors :
Agencia Estatal de Investigación (España)
European Research Council
Generalitat de Catalunya
Ministerio de Ciencia, Innovación y Universidades (España)
Ministerio de Economía y Competitividad (España)
European Commission
National Science Foundation (US)
Quintana, Alberto [0000-0002-9813-735X]
Menéndez, Enric [0000-0003-3809-2863]
Dendooven, Jolien [0000-0002-2385-3693]
Murray, Peyton D. [0000-0003-0389-0611]
Gilbert, Dustin A. [0000-0003-3747-3883]
Liu, Kai [0000-0001-9413-6782]
Pellicer, Eva [0000-0002-8901-0998]
Sort, Jordi [0000-0003-1213-3639]
Quintana, Alberto
Menéndez, Enric
Liedke, Maciej O.
Butterling, Maik
Wagner, Andreas
Sireus, Veronica
Torruella, Pau
Estradé, Sònia
Peiró, Francesca
Dendooven, Jolien
Detavernier, Christophe
Murray, Peyton D.
Gilbert, Dustin A.
Liu, Kai
Pellicer, Eva
Nogués, Josep
Sort, Jordi
Agencia Estatal de Investigación (España)
European Research Council
Generalitat de Catalunya
Ministerio de Ciencia, Innovación y Universidades (España)
Ministerio de Economía y Competitividad (España)
European Commission
National Science Foundation (US)
Quintana, Alberto [0000-0002-9813-735X]
Menéndez, Enric [0000-0003-3809-2863]
Dendooven, Jolien [0000-0002-2385-3693]
Murray, Peyton D. [0000-0003-0389-0611]
Gilbert, Dustin A. [0000-0003-3747-3883]
Liu, Kai [0000-0001-9413-6782]
Pellicer, Eva [0000-0002-8901-0998]
Sort, Jordi [0000-0003-1213-3639]
Quintana, Alberto
Menéndez, Enric
Liedke, Maciej O.
Butterling, Maik
Wagner, Andreas
Sireus, Veronica
Torruella, Pau
Estradé, Sònia
Peiró, Francesca
Dendooven, Jolien
Detavernier, Christophe
Murray, Peyton D.
Gilbert, Dustin A.
Liu, Kai
Pellicer, Eva
Nogués, Josep
Sort, Jordi
Publication Year :
2018

Abstract

Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However, technologically, this effect is facing important challenges: mechanical failure in strain-mediated piezoelectric/magnetostrictive devices, dearth of room-temperature multiferroics, or stringent thickness limitations in electrically charged metallic films. Voltage-driven ionic motion (magneto-ionics) circumvents most of these drawbacks while exhibiting interesting magnetoelectric phenomena. Nevertheless, magneto-ionics typically requires heat treatments and multicomponent heterostructures. Here we report on the electrolyte-gated and defect-mediated O and Co transport in a Co3O4 single layer which allows for room-temperature voltage-controlled ON-OFF ferromagnetism (magnetic switch) via internal reduction/oxidation processes. Negative voltages partially reduce Co3O4 to Co (ferromagnetism: ON), resulting in graded films including Co- and O-rich areas. Positive bias oxidizes Co back to Co3O4 (paramagnetism: OFF). This electric-field-induced atomic-scale reconfiguration process is compositionally, structurally, and magnetically reversible and self-sustained, since no oxygen source other than the Co3O4 itself is required. This process could lead to electric-field-controlled device concepts for spintronics.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286536360
Document Type :
Electronic Resource