том 18 издание 47 страницы 2203555

Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments

Тип публикацииJournal Article
Дата публикации2022-10-03
scimago Q1
wos Q1
БС1
SJR3.301
CiteScore16.1
Impact factor12.1
ISSN16136810, 16136829
General Chemistry
Biotechnology
General Materials Science
Biomaterials
Краткое описание

Metallic barcode nanowires (BNWs) composed of repeating heterogeneous segments fabricated by template‐assisted electrodeposition can offer extended functionality in magnetic, electrical, mechanical, and biomedical applications. The authors consider such nanostructures as a 3D system of magnetically interacting elements with magnetic behavior strongly affected by complex magnetostatic interactions. This study discusses the influence of geometrical parameters of segments on the character of their interactions and the overall magnetic behavior of the array of BNWs having alternating magnetization, because the Fe and Au segments are made of Fe‐Au alloys with high and low magnetizations. By controlling the applied current densities and the elapsed time in the electrodeposition, the dimension of the Fe‐Au BNWs can be regulated. This study reveals that the influence of the length of magnetically weak Au segments on the interaction field between nanowires is different for samples with magnetically strong 100 and 200 nm long Fe segments using the first‐order reversal curve (FORC) diagram method. With the help of micromagnetic simulations, three types of magnetostatic interactions in the BNW arrays are discovered and analy. This study demonstrates that the dominating type of interaction depends on the geometric parameters of the Fe and Au segments and the interwire and intrawire distances.

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Small
2 публикации, 25%
Advanced Materials
1 публикация, 12.5%
Physics of Metals and Metallography
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ACS Applied Nano Materials
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Физика металлов и металловедение
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Journal of Superconductivity and Novel Magnetism
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Science
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Samardak A. Yu. et al. Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments // Small. 2022. Vol. 18. No. 47. p. 2203555.
ГОСТ со всеми авторами (до 50) Скопировать
Samardak A. Yu., Jeon Y. S., Samardak V. Yu., Kozlov A. G., Rogachev K. A., Ognev A. V., Jeong E., Kim D. W., Ko M. J., Samardak A. S., Kim Y. K. Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments // Small. 2022. Vol. 18. No. 47. p. 2203555.
RIS |
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TY - JOUR
DO - 10.1002/smll.202203555
UR - https://doi.org/10.1002/smll.202203555
TI - Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments
T2 - Small
AU - Samardak, Aleksei Yu
AU - Jeon, Yoo Sung
AU - Samardak, Vadim Yu
AU - Kozlov, A. G.
AU - Rogachev, Kirill A
AU - Ognev, Alexey V.
AU - Jeong, Eunjin
AU - Kim, Dong Won
AU - Ko, Min Jun
AU - Samardak, Alexander S.
AU - Kim, Young Keun
PY - 2022
DA - 2022/10/03
PB - Wiley
SP - 2203555
IS - 47
VL - 18
PMID - 36192153
SN - 1613-6810
SN - 1613-6829
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2022_Samardak,
author = {Aleksei Yu Samardak and Yoo Sung Jeon and Vadim Yu Samardak and A. G. Kozlov and Kirill A Rogachev and Alexey V. Ognev and Eunjin Jeong and Dong Won Kim and Min Jun Ko and Alexander S. Samardak and Young Keun Kim},
title = {Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments},
journal = {Small},
year = {2022},
volume = {18},
publisher = {Wiley},
month = {oct},
url = {https://doi.org/10.1002/smll.202203555},
number = {47},
pages = {2203555},
doi = {10.1002/smll.202203555}
}
MLA
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Samardak, Aleksei Yu., et al. “Interwire and Intrawire Magnetostatic Interactions in Fe‐Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments.” Small, vol. 18, no. 47, Oct. 2022, p. 2203555. https://doi.org/10.1002/smll.202203555.