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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 >Low-temperature sintering and ferromagnetic properties of Li0.35Zn0.30Mn0.05Ti0.15Fe2.15O4 ferrites co-fired with Bi2O3-MgO mixture
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Low-temperature sintering and ferromagnetic properties of Li0.35Zn0.30Mn0.05Ti0.15Fe2.15O4 ferrites co-fired with Bi2O3-MgO mixture

机译:Li0.35Zn0.30mn0.05ti0.15Fe2.1504铁氧体与Bi2O3-MgO混合物共用的低温烧结和铁磁性

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In the present work, Li0.35Zn0.30Mn0.05Ti0.15Fe2.15O4 ferrites were successfully synthesized via solid-state reaction method with the assistance of Bi2O3-MgO mixture. It was observed that a pure spinel phase could be formed at low temperatures (880 degrees Ce920 degrees C), suggesting the compatibility of co-firing with silver internal electrodes. The employment of Bi2O3-MgO mixture could not only achieve the low-temperature sintering, but also facilitate the grain growth and subsequently promote the magnetic properties. SEM results revealed that the ferrites grain size was significantly increased (from 1 to 20 mu m) with an appropriate dopant addition (1.2 wt %). Meanwhile, the saturation induction was enhanced from 141.2 to 345.9 mT, the coercivity was decreased from 515.2 to 176.6 A/m, and the FMR linewidth was dramatically decreased from 749.0 to 245.0 Oe at 9.3 GHz. Thus it is expected that the improved properties will allow the Li0.35Zn0.30Mn0.05Ti0.15Fe2.15O4 ferrites to be a promising candidate for low temperature co-fired ceramics (LTCC) applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本作工作中,通过在Bi2O3-MgO混合物的帮助下成功地通过固态反应方法成功地合成了LI0.35ZN0.30MN0.05TI0.15FE2.15O4铁氧体。观察到纯尖晶石相可以在低温下形成(880摄氏度C),表明共用与银内电极的相容性。 Bi2O3-MgO混合物的就业不仅可以达到低温烧结,而且促进晶粒生长并随后促进磁性。 SEM结果表明,铁氧体粒度明显增加(从1至20μm),具有适当的掺杂剂添加(1.2wt%)。同时,饱和诱导从141.2%增加到345.9 mt,矫顽力从515.2%降至176.6 a / m,并且FMR线宽从749.0到245.0 OE大致降低至9.3GHz。因此,预期改善的性质将允许Li0.35Zn0.30mn0.05Ti0.15Fe2.15O4铁氧体成为低温共射陶瓷(LTCC)应用的有希望的候选者。 (c)2019 Elsevier B.v.保留所有权利。

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