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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigation of structural, hysteresis and electromagnetic parameters for microwave absorption application in doped Ba-Sr hexagonal ferrites at X-band
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Investigation of structural, hysteresis and electromagnetic parameters for microwave absorption application in doped Ba-Sr hexagonal ferrites at X-band

机译:X波段掺杂Ba-SR六边形铁氧体微波吸收施用结构,滞后和电磁参数的研究

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摘要

M-type Ba(0.5)Sr(0.5)Co(x)La(x)Fe(12-2)xO(19) hexagonal ferrite has been synthesized by the conventional ceramic method. X-ray diffraction analysis confirmed formation of M-type hexagonal structure while scanning electron microscopy analysis revealed a reduction in grain size with the doping of Co2+ and La3+ ions. The electromagnetic/microwave absorption has been measured from 8.2 GHz to 12.4 GHz in the microwave frequency regime and substantiated through hysteresis parameters, quarter wavelength, impedance matching, loss mechanisms. The hysteresis parameters, derived from hysteresis loops, infer soft ferrite nature of compositions. The doping of Co2+ and La3+ decreases coercivity to 17 Oe in composition x = 0.2 and increases saturation magnetization to 74.2 emu/g in composition x = 1.0. The doping improves impedance matching and increases microwave absorption as well as absorption bandwidth in the prepared compositions. The pronounced multi-peaks of absorption have been observed in composition x = 0.2 and 0.4 in the investigated frequency region. The depicted reflection loss dips are tunable through doping and thickness of the compositions. The reflection loss increases to -43.33 dB in composition x = 0.2 at 10.75 GHz and 1.9mm thickness. The composition x = 0.2 also shows -10 dB and -20 dB narrow absorption bandwidth of 300 MHz and 320 MHz respectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:M型钡(0.5)的Sr(0.5)的Co(x)的的La(x)的铁(12-2)XO(19)六方晶系铁氧体已经通过常规的陶瓷的方法合成。 X射线衍射分析证实形成M型六角晶结构的同时进行扫描电子显微镜分析显示,在晶粒尺寸的减小以Co2 +和镧离子的掺杂。电磁/微波吸收已经从8.2 GHz的测量在微波频率政权12.4 GHz和通过滞后参数,四分之一波长,阻抗匹配,损耗机制证实。滞后参数,从磁滞回线衍生,推断组合物的软铁氧体的性质。 Co2 +与镧的掺杂降低矫顽力为x = 0.2和增加饱和磁化强度17奥斯特在组合物中以74.2鸸鹋/ g的在组成x = 1.0。掺杂改善了在制备的组合物阻抗匹配和增加微波吸收以及吸收带宽。吸收的显着多峰已在组合物在所研究的频率区域X = 0.2和0.4被观察到。所描绘的反射损耗是倾角通过该组合物的掺杂和厚度可调谐的。反射损失增大到-43.33分贝在组成x = 0.2在10.75 GHz和1.9毫米厚度。的组分x = 0.2还示出了-10分贝和300兆赫和320兆赫的分别-20分贝窄吸收带宽。 (c)2019 Elsevier B.v.保留所有权利。

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