Morphology and magnetic properties of the ethylene-co-vinyl acetate/iron nanocomposite films prepared by implantation with Fe6+ ions
Author | Božanić, Dušan K. |
Author | Draganić, Ilija |
Author | Bibić, Nataša |
Author | Luyt, Adriaan S. |
Author | Konstantinović, Zorica |
Author | Djoković, Vladimir |
Available date | 2017-03-02T05:35:09Z |
Publication Date | 2016-08 |
Publication Name | Applied Surface Science |
Identifier | http://dx.doi.org/10.1016/j.apsusc.2016.04.020 |
Citation | Dušan K. Božanić, Ilija Draganić, Nataša Bibić, Adriaan S. Luyt, Zorica Konstantinović, Vladimir Djoković, Morphology and magnetic properties of the ethylene-co-vinyl acetate/iron nanocomposite films prepared by implantation with Fe6+ ions, Applied Surface Science, Volume 378, 15 August 2016, Pages 362-367 |
ISSN | 0169-4332 |
Abstract | Ethylene-co-vinyl acetate/iron nanocomposite films were fabricated by implantation with multiplecharged ions at different fluencies. The films obtained with ion fluency of 1 × 1017cm−2were used forspecific studies. It was found that spherical ∼1.5 nm diameter nanoparticles were formed upon implan-tation. They were clustered into a single 80 nm wide strip about 40 nm beneath the film surface. Themagnetic measurements of the film showed that the particles exhibit superparamagnetic behavior witha blocking temperature below 5 K. A second type of the samples was also prepared with ion fluencyof 1 × 1017cm−2, but prior to implantation, the iron was evaporated onto the co-polymer surface. Ananocomposite film of different morphology was obtained upon the implantation and the particles weremuch smaller (∼0.8 nm). The magnetic behavior of both the films was that of isolated nanoparticles,despite the high ion fluency of 1 × 1017cm−2. |
Sponsor | Ministry of Education, Science and Technological Development, Republic of Serbia (Project Nos. 172056, III45020 and III45018). |
Language | en |
Publisher | Elsevier |
Subject | Ion beam mixing Magnetic properties Multiple charged ions Nanocomposite Iron Ion implantation |
Type | Article |
Pagination | 362-367 |
Volume Number | 378 |
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