Varsha C. Pujari , Pramod D. Mhase , Sunil M. Patange , P.S. More , Sher Singh Meena , Shoyebmohamad F. Shaikh , Abdullah M. Al-Enizi , Santosh S. Jadhav
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The structural results revealed the formation of the M-type hexaferrite having P6<sub>3</sub>/mmc as a space group along with the co-existence of a secondary Fe<sub>2</sub>O<sub>3</sub> phase. FESEM micrographs exhibit the hexagonal platelets randomly arranged with agglomerations at some places giving rise to the random variations in particle size with varying ’x’. Magnetic measurements (VSM) show that the saturation magnetization (M<sub>S</sub>) and coercivity (H<sub>C</sub>) increase with the increasing Dy<sup>3+</sup> doping pointing towards the fact that the Dy doping in Ba-Ca ferrite can be used to fabricate the hard ferrites with good saturation magnetization. The Mössbauer spectrum recorded at room temperature reveals five superimposed sextets representing the five Fe<sup>3+</sup> ion sites. Investigating the Microwave absorption (MWA) characteristics in the frequency range 8 − 12 GHz (X-band), reveals that the sample with x = 0.1 having 3 mm thickness possesses good MWA power. Its minimum RL value for matching frequency 10.06 GHz is approximately −26.96 dB, indicating that more than 90 % of microwaves are absorbed. The current work offers the Dysprosium-doped BCDF hexaferrites, as promising candidates<!--> <!-->for microwave absorption applications.</div></div>","PeriodicalId":366,"journal":{"name":"Journal of Magnetism and Magnetic Materials","volume":"610 ","pages":"Article 172555"},"PeriodicalIF":2.5000,"publicationDate":"2024-09-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Influence of Dy3+ doping on Mössbauer, magnetic and microwave absorption properties of M-type Ba0.5Ca0.5DyxFe12-xO19 hexaferrites\",\"authors\":\"Varsha C. Pujari , Pramod D. Mhase , Sunil M. Patange , P.S. More , Sher Singh Meena , Shoyebmohamad F. Shaikh , Abdullah M. Al-Enizi , Santosh S. 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FESEM micrographs exhibit the hexagonal platelets randomly arranged with agglomerations at some places giving rise to the random variations in particle size with varying ’x’. Magnetic measurements (VSM) show that the saturation magnetization (M<sub>S</sub>) and coercivity (H<sub>C</sub>) increase with the increasing Dy<sup>3+</sup> doping pointing towards the fact that the Dy doping in Ba-Ca ferrite can be used to fabricate the hard ferrites with good saturation magnetization. The Mössbauer spectrum recorded at room temperature reveals five superimposed sextets representing the five Fe<sup>3+</sup> ion sites. Investigating the Microwave absorption (MWA) characteristics in the frequency range 8 − 12 GHz (X-band), reveals that the sample with x = 0.1 having 3 mm thickness possesses good MWA power. Its minimum RL value for matching frequency 10.06 GHz is approximately −26.96 dB, indicating that more than 90 % of microwaves are absorbed. 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引用次数: 0
摘要
本研究报告系统研究了 Ba0.5Ca0.5DyxFe12-xO19 M 型六价铁氧体的磁性和结构特性。采用溶胶-凝胶自点火技术在 BCDF 中掺入镝 @ x = 0 - 0.2,保持 Δx = 0.05。合成样品在 1050°C 下烧结 4 小时。样品的晶体学分析是通过 X 射线衍射图(XRD)进行的,而形态和元素分析则是通过场发射扫描电子显微镜(FESEM)和能量色散 X 射线光谱(EDAX)图谱进行的。结构结果显示,形成了以 P63/mmc 为空间群的 M 型六价铁氧体,同时还存在次生的 Fe2O3 相。FESEM 显微照片显示,六角形小板块随机排列,某些地方有团聚现象,导致粒度随 "x "的变化而随机变化。磁性测量(VSM)显示,饱和磁化(MS)和矫顽力(HC)随着 Dy3+ 掺杂量的增加而增加,这表明在 Ba-Ca 铁氧体中掺杂 Dy 可用于制造具有良好饱和磁化的硬铁氧体。室温下记录的莫斯鲍尔光谱显示出五个叠加的六面体,代表五个 Fe3+ 离子位点。对频率范围为 8 - 12 GHz(X 波段)的微波吸收(MWA)特性的研究表明,厚度为 3 毫米的 x = 0.1 样品具有良好的 MWA 功率。其匹配频率 10.06 GHz 的最小 RL 值约为 -26.96 dB,表明 90% 以上的微波被吸收。目前的研究工作为微波吸收应用提供了掺镝 BCDF 六晶片。
Influence of Dy3+ doping on Mössbauer, magnetic and microwave absorption properties of M-type Ba0.5Ca0.5DyxFe12-xO19 hexaferrites
The present research paper reports a systematic study of the magnetic, and structural properties of Ba0.5Ca0.5DyxFe12-xO19 M-type hexaferrite. The dysprosium was doped @ x = 0 − 0.2, keeping Δx = 0.05, in BCDF by the sol–gel self-ignition technique. The sintering of the synthesized samples was performed for 4 h at 1050°C. The crystallographic analysis of the samples was made from the X-ray diffractograms (XRD), while the morphological and elemental analysis was made from field emission scanning electron microscopy (FESEM), and energy-dispersive X-ray spectroscopy (EDAX) profiles. The structural results revealed the formation of the M-type hexaferrite having P63/mmc as a space group along with the co-existence of a secondary Fe2O3 phase. FESEM micrographs exhibit the hexagonal platelets randomly arranged with agglomerations at some places giving rise to the random variations in particle size with varying ’x’. Magnetic measurements (VSM) show that the saturation magnetization (MS) and coercivity (HC) increase with the increasing Dy3+ doping pointing towards the fact that the Dy doping in Ba-Ca ferrite can be used to fabricate the hard ferrites with good saturation magnetization. The Mössbauer spectrum recorded at room temperature reveals five superimposed sextets representing the five Fe3+ ion sites. Investigating the Microwave absorption (MWA) characteristics in the frequency range 8 − 12 GHz (X-band), reveals that the sample with x = 0.1 having 3 mm thickness possesses good MWA power. Its minimum RL value for matching frequency 10.06 GHz is approximately −26.96 dB, indicating that more than 90 % of microwaves are absorbed. The current work offers the Dysprosium-doped BCDF hexaferrites, as promising candidates for microwave absorption applications.
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