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首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetic properties of zinc ferrite nanoparticles synthesized by hydrolysis in a polyol medium
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Magnetic properties of zinc ferrite nanoparticles synthesized by hydrolysis in a polyol medium

机译:在多元醇介质中水解合成的铁氧体锌纳米颗粒的磁性

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Highly crystalline, nanometre sized ZnFe2O4 particles with different diameters, 6.6 and 14.8 nm, were prepared by forced hydrolysis in a polyol medium. The DC magnetic properties exhibit a strong dependence on the particle size as a result of the unusual cation distribution. They clearly establish their superparamagnetic character at room temperature and the occurrence of ferrimagnetic or ferromagnetic ordering at low temperature. The magnetization is found to increase with grain size reduction. The Fe-57 Mossbauer spectra were recorded at 300 and 4.5 K. There is no evidence for the presence of the Fe2+ charge state, confirming the perfect stoichiometry of the two samples. At 300 K, the Mossbauer spectra consist of doublets due to the superparamagnetic behaviour whereas at 4.5 K they reveal a magnetically blocked state. Mossbauer spectra at 10 K in an external 6 T magnetic field applied parallel to the direction of the gamma rays clearly show a close to collinear Neel-like ferrimagnetic ordering for the 6.6 nm particles and a canted Yafet-Kittel-like ferrimagnetic ordering for the 14.8 nm ones.
机译:通过在多元醇介质中强制水解,制备了具有不同直径(6.6和14.8 nm)的高度结晶的纳米级ZnFe2O4颗粒。由于异常的阳离子分布,DC磁性能对颗粒大小表现出强烈的依赖性​​。它们清楚地确定了它们在室温下的超顺磁性,并在低温下形成了亚铁磁或铁磁有序。发现磁化强度随着晶粒尺寸的减小而增加。 Fe-57 Mossbauer光谱在300和4.5 K下记录。没有证据表明存在Fe2 +电荷状态,证实了两个样品的理想化学计量。 Mossbauer谱在300 K时由于超顺磁性而由双峰组成,而在4.5 K时,它们显示出磁阻态。在平行于伽马射线方向施加的外部6 T磁场中,在10 K的Mossbauer光谱清楚地显示,对于6.6 nm粒子,接近于共线Neel状亚铁磁序,对于14.8则类似于Yafet-Kittel倾斜的亚铁磁序。纳米的。

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