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首页> 外文期刊>Journal of magnetism and magnetic materials >Influence of Zn concentration on the structural and magnetic properties of nanocrystalline Cu_(1-x)Zn_xFe_2O_4 mixed ferrites synthesized using novel combustion method
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Influence of Zn concentration on the structural and magnetic properties of nanocrystalline Cu_(1-x)Zn_xFe_2O_4 mixed ferrites synthesized using novel combustion method

机译:锌浓度对新型燃烧法合成纳米晶Cu_(1-x)Zn_xFe_2O_4混合铁氧体结构和磁性的影响

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In this work, we report the structural and magnetic properties of nanocrystalline Cu_(1-x)Zn_xFe_2O_4 mixed ferrites synthesized using novel combustion method. The prepared samples are spinel structured and the secondary phase a-Fe_2O_3 is also present in CuFe_2O_4. The size of the crystallites ranges between 9.6 nm and 31 nm and the lattice constant increases from 8.342 A to 8.435 A. The FTIR absorption bands of CuFe_2O_4 are observed at 571 cm~(-1) and 409 cm~(-1) for tetrahedral and octahedral sites, respectively. These bands are shifting to 547 cm~(-1) and 397 cm~(-1) for Zn substitution. Raman spectra show the change in local environment of tetrahedral and octahedral interstitial sites with Zn. The FE-SEM images show that the prepared samples are nano sized and the substitution of Zn decreases the agglomeration. The magnetic study reveals that the saturation magnetizations initially increases from 21.45 emu/g (x-0) to 44.16 emu/g (x = 0.2) and then decreases at 300 K. The superparamagnetic behavior is observed for samples of x > 0.4 concentration. The temperature dependent zero field cooled and field cooled magnetic measurements confirm the superparamagnetic nature and the observed blocking temperature decreases from 120.4 K to 32.3 K. The hysteresis curves measured at 20 K show the coercivity and it varies from 663 Oe to 70 Oe for increasing Zn content.
机译:在这项工作中,我们报告了使用新型燃烧方法合成的纳米晶Cu_(1-x)Zn_xFe_2O_4混合铁氧体的结构和磁性。所制备的样品为尖晶石结构,并且第二相a-Fe_2O_3也存在于CuFe_2O_4中。晶粒尺寸在9.6 nm和31 nm之间,晶格常数从8.342 A增加到8.435A。在四面体的571 cm〜(-1)和409 cm〜(-1)处观察到CuFe_2O_4的FTIR吸收带。和八面体位置。这些带移至547 cm〜(-1)和397 cm〜(-1)进行Zn取代。拉曼光谱显示具有Zn的四面体和八面体间隙位置的局部环境的变化。 FE-SEM图像显示所制备的样品为纳米级,而Zn的取代降低了团聚。磁性研究表明,饱和磁化强度最初从21.45 emu / g(x-0)增加到44.16 emu / g(x = 0.2),然后在300 K时减小。对于x> 0.4浓度的样品,观察到超顺磁行为。温度相关的零磁场冷却和磁场冷却的磁测量结果证实了超顺磁性质,观察到的阻塞温度从120.4 K下降至32.3K。在20 K下测得的磁滞曲线显示了矫顽力,并且随着Zn的增加,其磁化强度从663 Oe到70 Oe变化内容。

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