Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle

Due to the rapid development of the information communication industries, it is expected that next-generation mobile communication devices in the data communication environment will be used at the same time in the L~X band (1–12 GHz). To mutual electric wave interference prevention, research on wave...

Full description

Bibliographic Details
Main Authors: Yang S., Jeong K.-Pil., Park S.-Y., Kim J.-Gon.
Format: Article
Language:English
Published: Polish Academy of Sciences 2017-06-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0177/amm-2017-0177.xml?format=INT
_version_ 1818316408907366400
author Yang S.
Jeong K.-Pil.
Park S.-Y.
Kim J.-Gon.
author_facet Yang S.
Jeong K.-Pil.
Park S.-Y.
Kim J.-Gon.
author_sort Yang S.
collection DOAJ
description Due to the rapid development of the information communication industries, it is expected that next-generation mobile communication devices in the data communication environment will be used at the same time in the L~X band (1–12 GHz). To mutual electric wave interference prevention, research on wave absorbers in L~X band is needed. In this paper, barium ferrite was researched as L~X band wave absorber. The Barium ferrite (BaM, Ba ferrite) substituted by divalent ions (Co2+, Cu2+, Ni2+, Zn2+) and tetravalent ion (Ti4+). The substituted Ba ferrite nanoparticles were fabricated by sol-gel process. Lattice parameter, particle size, magnetic properties, and reflection loss were analyzed by X-ray diffraction (X-RD), a Vibrating Sample Magnetometer (VSM), and a Network Analyzer. Lattice parameter of Ba ferrite was changed 0.0005 to 0.0078 Å in a-b direction, and 0.0187 to 0.0445 Å in c-direction by substituted elements, and it influenced on magnetic anisotropy. In addition, Co-Ti substitution elements influenced that coercive force decrease 5,739 to 2,240 Oe. Moreover, reflection loss frequencies were shifted from 16.3 GHz to 14.4 and 17.4 GHz by substituted elements Co-Ti and Zn-Ti.
first_indexed 2024-12-13T09:20:58Z
format Article
id doaj.art-8b00f963d30d44edb8d0a6ee2ca4a976
institution Directory Open Access Journal
issn 2300-1909
language English
last_indexed 2024-12-13T09:20:58Z
publishDate 2017-06-01
publisher Polish Academy of Sciences
record_format Article
series Archives of Metallurgy and Materials
spelling doaj.art-8b00f963d30d44edb8d0a6ee2ca4a9762022-12-21T23:52:44ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092017-06-016221201120410.1515/amm-2017-0177amm-2017-0177Influence of Substituted Elements on Reflection Loss of Ba-Ferrite NanoparticleYang S.0Jeong K.-Pil.1Park S.-Y.2Kim J.-Gon.3Advanced Materials Science and Engineering, Incheon National University, 119 Academy-Ro, Yeonsu-Gu, Incheon, 22012 KoreaAdvanced Materials Science and Engineering, Incheon National University, 119 Academy-Ro, Yeonsu-Gu, Incheon, 22012 KoreaSpin Engineering Physics Team, Korea Basic Science Institute, Daejeon, KoreaAdvanced Materials Science and Engineering, Incheon National University, 119 Academy-Ro, Yeonsu-Gu, Incheon, 22012 KoreaDue to the rapid development of the information communication industries, it is expected that next-generation mobile communication devices in the data communication environment will be used at the same time in the L~X band (1–12 GHz). To mutual electric wave interference prevention, research on wave absorbers in L~X band is needed. In this paper, barium ferrite was researched as L~X band wave absorber. The Barium ferrite (BaM, Ba ferrite) substituted by divalent ions (Co2+, Cu2+, Ni2+, Zn2+) and tetravalent ion (Ti4+). The substituted Ba ferrite nanoparticles were fabricated by sol-gel process. Lattice parameter, particle size, magnetic properties, and reflection loss were analyzed by X-ray diffraction (X-RD), a Vibrating Sample Magnetometer (VSM), and a Network Analyzer. Lattice parameter of Ba ferrite was changed 0.0005 to 0.0078 Å in a-b direction, and 0.0187 to 0.0445 Å in c-direction by substituted elements, and it influenced on magnetic anisotropy. In addition, Co-Ti substitution elements influenced that coercive force decrease 5,739 to 2,240 Oe. Moreover, reflection loss frequencies were shifted from 16.3 GHz to 14.4 and 17.4 GHz by substituted elements Co-Ti and Zn-Ti.http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0177/amm-2017-0177.xml?format=INTBa ferriteSubstitutional m-type ferritereflection losssol-geladditional atom
spellingShingle Yang S.
Jeong K.-Pil.
Park S.-Y.
Kim J.-Gon.
Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
Archives of Metallurgy and Materials
Ba ferrite
Substitutional m-type ferrite
reflection loss
sol-gel
additional atom
title Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
title_full Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
title_fullStr Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
title_full_unstemmed Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
title_short Influence of Substituted Elements on Reflection Loss of Ba-Ferrite Nanoparticle
title_sort influence of substituted elements on reflection loss of ba ferrite nanoparticle
topic Ba ferrite
Substitutional m-type ferrite
reflection loss
sol-gel
additional atom
url http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0177/amm-2017-0177.xml?format=INT
work_keys_str_mv AT yangs influenceofsubstitutedelementsonreflectionlossofbaferritenanoparticle
AT jeongkpil influenceofsubstitutedelementsonreflectionlossofbaferritenanoparticle
AT parksy influenceofsubstitutedelementsonreflectionlossofbaferritenanoparticle
AT kimjgon influenceofsubstitutedelementsonreflectionlossofbaferritenanoparticle