Magnetic, magnetoresistive and structural properties of Cox(CoO)100-x thin film composites
•Heterogeneous Cox(CoO)100-x thin films has been synthesized by ion-beam sputtering of a compound target.•The percolation threshold was significantly lower than that for most of the studied previously nanocomposites.•For compositions near the percolation threshold, a negative tunnel-type magnetoresi...
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Published in: | Journal of magnetism and magnetic materials Vol. 587; p. 171154 |
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01-12-2023
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Abstract | •Heterogeneous Cox(CoO)100-x thin films has been synthesized by ion-beam sputtering of a compound target.•The percolation threshold was significantly lower than that for most of the studied previously nanocomposites.•For compositions near the percolation threshold, a negative tunnel-type magnetoresistance is observed on the dielectric side.•The magnetoresistance is proportional to the square of magnetization and is characterized by hysteresis, which correlates well with magnetic hysteresis.
The structural, magnetic, and magnetoresistive properties of Cox(CoO)100-x thin film composites synthesized by ion-beam sputtering of a composite target in an argon and mixed atmosphere (argon + oxygen) has been studied. The experimentally determined percolation threshold was significantly lower than that for most of the studied previously nanocomposites: ∼ 12.2 at % Co and ∼8.3 at % Co for films fabricated in inert and mixed atmosphere, respectively. This is explained by the special morphology of the films when small metallic Co nanoparticles are located on the surface of larger CoO particles. A negative tunnel-type magnetoresistance reaching 2.4% in 9 kOe field at room temperature was found for composites with close to the percolation threshold Co content. The magnetoresistance is proportional to the square of magnetization and is characterized by hysteresis, which correlates well with magnetic hysteresis. Magnetic hysteresis with a coercivity of the order of 700 Oe is observed for dielectric compositions up to 4 at. % Co. A possible reason for this behavior, along with the special morphology, is the appearance of thin layers of antiferromagnetic oxide at the interface between Co nanoparticles and CoO particles, which causes a significant increase in magnetic anisotropy. |
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AbstractList | •Heterogeneous Cox(CoO)100-x thin films has been synthesized by ion-beam sputtering of a compound target.•The percolation threshold was significantly lower than that for most of the studied previously nanocomposites.•For compositions near the percolation threshold, a negative tunnel-type magnetoresistance is observed on the dielectric side.•The magnetoresistance is proportional to the square of magnetization and is characterized by hysteresis, which correlates well with magnetic hysteresis.
The structural, magnetic, and magnetoresistive properties of Cox(CoO)100-x thin film composites synthesized by ion-beam sputtering of a composite target in an argon and mixed atmosphere (argon + oxygen) has been studied. The experimentally determined percolation threshold was significantly lower than that for most of the studied previously nanocomposites: ∼ 12.2 at % Co and ∼8.3 at % Co for films fabricated in inert and mixed atmosphere, respectively. This is explained by the special morphology of the films when small metallic Co nanoparticles are located on the surface of larger CoO particles. A negative tunnel-type magnetoresistance reaching 2.4% in 9 kOe field at room temperature was found for composites with close to the percolation threshold Co content. The magnetoresistance is proportional to the square of magnetization and is characterized by hysteresis, which correlates well with magnetic hysteresis. Magnetic hysteresis with a coercivity of the order of 700 Oe is observed for dielectric compositions up to 4 at. % Co. A possible reason for this behavior, along with the special morphology, is the appearance of thin layers of antiferromagnetic oxide at the interface between Co nanoparticles and CoO particles, which causes a significant increase in magnetic anisotropy. |
ArticleNumber | 171154 |
Author | Perova, N.N. Sitnikov, A.V. Kushchev, S.B. Ganshina, E.A. Foshin, V.A. Makagonov, V.A. Kalinin, Y.E. Granovsky, A.B. |
Author_xml | – sequence: 1 givenname: A.V. orcidid: 0000-0002-9438-9234 surname: Sitnikov fullname: Sitnikov, A.V. organization: Voronezh State Technical University, 394006 Voronezh, Russia – sequence: 2 givenname: V.A. orcidid: 0000-0002-4024-4064 surname: Makagonov fullname: Makagonov, V.A. email: vlad_makagonov@mail.ru organization: Voronezh State Technical University, 394006 Voronezh, Russia – sequence: 3 givenname: Y.E. surname: Kalinin fullname: Kalinin, Y.E. organization: Voronezh State Technical University, 394006 Voronezh, Russia – sequence: 4 givenname: S.B. surname: Kushchev fullname: Kushchev, S.B. organization: Voronezh State Technical University, 394006 Voronezh, Russia – sequence: 5 givenname: V.A. orcidid: 0000-0003-2784-402X surname: Foshin fullname: Foshin, V.A. organization: Voronezh State Technical University, 394006 Voronezh, Russia – sequence: 6 givenname: N.N. orcidid: 0000-0003-2675-3329 surname: Perova fullname: Perova, N.N. organization: Faculty of Physics, Lomonosov Moscow State University, 119991 Moscow, Russia – sequence: 7 givenname: E.A. orcidid: 0000-0002-6709-158X surname: Ganshina fullname: Ganshina, E.A. organization: Faculty of Physics, Lomonosov Moscow State University, 119991 Moscow, Russia – sequence: 8 givenname: A.B. orcidid: 0000-0001-9697-6128 surname: Granovsky fullname: Granovsky, A.B. organization: Faculty of Physics, Lomonosov Moscow State University, 119991 Moscow, Russia |
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Cites_doi | 10.1103/PhysRevB.39.6995 10.21883/TPL.2022.08.55066.19258 10.1063/1.371948 10.1134/S1063776121120049 10.1016/S0304-8853(99)00515-6 10.1103/PhysRevB.62.14273 10.1109/TMAG.2007.907503 10.1016/S0304-8853(96)00490-8 10.1109/TPEL.2012.2233760 10.1088/0022-3727/44/39/393001 10.1016/0921-5107(94)08032-1 10.1103/PhysRevB.53.R11927 |
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Snippet | •Heterogeneous Cox(CoO)100-x thin films has been synthesized by ion-beam sputtering of a compound target.•The percolation threshold was significantly lower... |
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Title | Magnetic, magnetoresistive and structural properties of Cox(CoO)100-x thin film composites |
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