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Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix

In this study, we evaluated the magnetization properties of a magnetic alloy with single-crystalline cubic nanostructures, in order to clarify its magnetocrystalline anisotropy. Upon applying a specific annealing treatment to the CuNiFe base material, the precipitated magnetic particles grew into cu...

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Autores principales: Kobayashi, Shota, Yamaminami, Tsuyoshi, Sakakura, Hibiki, Takeda, Mahoto, Yamada, Tsutomu, Sakuma, Hiroshi, Trisnanto, Suko Bagus, Ota, Satoshi, Takemura, Yasushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397128/
https://www.ncbi.nlm.nih.gov/pubmed/32707694
http://dx.doi.org/10.3390/molecules25143282
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author Kobayashi, Shota
Yamaminami, Tsuyoshi
Sakakura, Hibiki
Takeda, Mahoto
Yamada, Tsutomu
Sakuma, Hiroshi
Trisnanto, Suko Bagus
Ota, Satoshi
Takemura, Yasushi
author_facet Kobayashi, Shota
Yamaminami, Tsuyoshi
Sakakura, Hibiki
Takeda, Mahoto
Yamada, Tsutomu
Sakuma, Hiroshi
Trisnanto, Suko Bagus
Ota, Satoshi
Takemura, Yasushi
author_sort Kobayashi, Shota
collection PubMed
description In this study, we evaluated the magnetization properties of a magnetic alloy with single-crystalline cubic nanostructures, in order to clarify its magnetocrystalline anisotropy. Upon applying a specific annealing treatment to the CuNiFe base material, the precipitated magnetic particles grew into cubic granules, resulting in the formation of nanometric cubic single crystals of magnetic CuNiFe in a nonmagnetic Cu-rich matrix. The cubic nanostructures of CuNiFe were oriented along their crystallographic axis, in the <100> direction of the face-centered-cubic structure. We evaluated the static magnetization properties of the sample, which originated primarily from the CuNiFe nanocubes precipitated in the Cu-rich matrix, under an applied DC magnetic field. The magnetocrystalline anisotropy was readily observed in the magnetization curves. The <111> axis of the CuNiFe was observed to be the easy axis of magnetization. We also investigated the dynamic magnetization properties of the sample under an AC magnetic field. By subtracting the magnetic signal induced by the eddy current from the magnetization curves of the sample, we could obtain the intrinsic AC magnetization properties of the CuNiFe nanocubes.
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spelling pubmed-73971282020-08-05 Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix Kobayashi, Shota Yamaminami, Tsuyoshi Sakakura, Hibiki Takeda, Mahoto Yamada, Tsutomu Sakuma, Hiroshi Trisnanto, Suko Bagus Ota, Satoshi Takemura, Yasushi Molecules Article In this study, we evaluated the magnetization properties of a magnetic alloy with single-crystalline cubic nanostructures, in order to clarify its magnetocrystalline anisotropy. Upon applying a specific annealing treatment to the CuNiFe base material, the precipitated magnetic particles grew into cubic granules, resulting in the formation of nanometric cubic single crystals of magnetic CuNiFe in a nonmagnetic Cu-rich matrix. The cubic nanostructures of CuNiFe were oriented along their crystallographic axis, in the <100> direction of the face-centered-cubic structure. We evaluated the static magnetization properties of the sample, which originated primarily from the CuNiFe nanocubes precipitated in the Cu-rich matrix, under an applied DC magnetic field. The magnetocrystalline anisotropy was readily observed in the magnetization curves. The <111> axis of the CuNiFe was observed to be the easy axis of magnetization. We also investigated the dynamic magnetization properties of the sample under an AC magnetic field. By subtracting the magnetic signal induced by the eddy current from the magnetization curves of the sample, we could obtain the intrinsic AC magnetization properties of the CuNiFe nanocubes. MDPI 2020-07-19 /pmc/articles/PMC7397128/ /pubmed/32707694 http://dx.doi.org/10.3390/molecules25143282 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kobayashi, Shota
Yamaminami, Tsuyoshi
Sakakura, Hibiki
Takeda, Mahoto
Yamada, Tsutomu
Sakuma, Hiroshi
Trisnanto, Suko Bagus
Ota, Satoshi
Takemura, Yasushi
Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title_full Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title_fullStr Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title_full_unstemmed Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title_short Magnetization Characteristics of Oriented Single-Crystalline NiFe-Cu Nanocubes Precipitated in a Cu-Rich Matrix
title_sort magnetization characteristics of oriented single-crystalline nife-cu nanocubes precipitated in a cu-rich matrix
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397128/
https://www.ncbi.nlm.nih.gov/pubmed/32707694
http://dx.doi.org/10.3390/molecules25143282
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