Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films
The effects of antiferromagnetic corrosion on the magnetic properties of exchange biased thin films were studied. A Ni81Fe19/Ir20Mn80 bilayer was grown using DC sputtering. The crystal structure, microstructure, and magnetic properties of the samples were examined using x-ray diffraction (XRD), scan...
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doaj-8f01519d0b5245b2a5ce9227a5f323192020-11-25T03:43:31ZengAIP Publishing LLCAIP Advances2158-32262020-08-01108085108085108-610.1063/5.0007755Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin filmsSupapich Thongdee0Peerapat Lekkla1Chakkrit Supavasuthi2Thammanoon Sreethawong3Pongsakorn Jantaratana4Department of Physics, Faculty of Science, Kasetsart University, Bangkok 10900, ThailandDepartment of Physics, Faculty of Science, Kasetsart University, Bangkok 10900, ThailandWestern Digital (Thailand) Co., Ltd., 140 Moo 2, BangPa-In Industrial Estate, Klongjig, BangPa-In, Ayutthaya 13160, ThailandWestern Digital (Thailand) Co., Ltd., 140 Moo 2, BangPa-In Industrial Estate, Klongjig, BangPa-In, Ayutthaya 13160, ThailandDepartment of Physics, Faculty of Science, Kasetsart University, Bangkok 10900, ThailandThe effects of antiferromagnetic corrosion on the magnetic properties of exchange biased thin films were studied. A Ni81Fe19/Ir20Mn80 bilayer was grown using DC sputtering. The crystal structure, microstructure, and magnetic properties of the samples were examined using x-ray diffraction (XRD), scanning electron microscope along with energy dispersive spectrometer, and resonance-vibrating sample magnetometer, respectively. XRD patterns revealed that the crystalline structure was (111) for both IrMn and NiFe layers. After magnetic field cooling, the room-temperature exchange bias field and coercive field were determined from hysteresis loops and no training effect was observed during the remagnetization process. The magnetic properties of the exchange biased bilayer strongly depended on the level of Mn corrosion in deionized (DI) water. A step-like magnetization curve was observed in the bilayer after soaking in DI water for 10 min. A detailed analysis of the magnetic moment response indicated an increase in the depth and area of corroded Mn with increasing soaking time. Trace amounts of Mn2+ in DI water, detected by a spectrophotometric technique using 1-(2-pyridylazo)-2-naphthol as an indicator, confirmed increasing Mn corrosion with increasing soaking time.http://dx.doi.org/10.1063/5.0007755 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Supapich Thongdee Peerapat Lekkla Chakkrit Supavasuthi Thammanoon Sreethawong Pongsakorn Jantaratana |
spellingShingle |
Supapich Thongdee Peerapat Lekkla Chakkrit Supavasuthi Thammanoon Sreethawong Pongsakorn Jantaratana Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films AIP Advances |
author_facet |
Supapich Thongdee Peerapat Lekkla Chakkrit Supavasuthi Thammanoon Sreethawong Pongsakorn Jantaratana |
author_sort |
Supapich Thongdee |
title |
Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films |
title_short |
Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films |
title_full |
Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films |
title_fullStr |
Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films |
title_full_unstemmed |
Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films |
title_sort |
effects of mn corrosion on the magnetic properties of ni81fe19/ir20mn80 exchange biased thin films |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2020-08-01 |
description |
The effects of antiferromagnetic corrosion on the magnetic properties of exchange biased thin films were studied. A Ni81Fe19/Ir20Mn80 bilayer was grown using DC sputtering. The crystal structure, microstructure, and magnetic properties of the samples were examined using x-ray diffraction (XRD), scanning electron microscope along with energy dispersive spectrometer, and resonance-vibrating sample magnetometer, respectively. XRD patterns revealed that the crystalline structure was (111) for both IrMn and NiFe layers. After magnetic field cooling, the room-temperature exchange bias field and coercive field were determined from hysteresis loops and no training effect was observed during the remagnetization process. The magnetic properties of the exchange biased bilayer strongly depended on the level of Mn corrosion in deionized (DI) water. A step-like magnetization curve was observed in the bilayer after soaking in DI water for 10 min. A detailed analysis of the magnetic moment response indicated an increase in the depth and area of corroded Mn with increasing soaking time. Trace amounts of Mn2+ in DI water, detected by a spectrophotometric technique using 1-(2-pyridylazo)-2-naphthol as an indicator, confirmed increasing Mn corrosion with increasing soaking time. |
url |
http://dx.doi.org/10.1063/5.0007755 |
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