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首页> 外文期刊>Journal of magnetism and magnetic materials >Preparation and investigation of magnetic properties of MnNiTi-substituted strontium hexaferrite nanoparticles
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Preparation and investigation of magnetic properties of MnNiTi-substituted strontium hexaferrite nanoparticles

机译:MnNiTi取代六锶锶铁氧体纳米粒子的制备及磁性研究

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摘要

A series of M-type strontium hexaferrite powders with substitution of Mn~(2+), Ni~(2+) and Ti~(4+) ions for Fe~(3+) ions according to the formula SrFe_9(Mn_(0.5-x)Ni_xTi_(0.5))_3O_(19), where x ranges from 0 to 0.5 with a step of 0.1, has been prepared via the conventional ceramic method. In order to get nanoparticles, the obtained powders were milled in a high energy SPEX mill for 1 h. XRD investigations of the unmilled and milled powders show that the prepared samples are all single phase hexaferrite. Lattice parameters and mean crystallite sizes of the powders were determined from the XRD data and Scherrer's formula. Transmission electron microscope (TEM) was used to analyze their structures. Room temperature magnetizations and coercivities of the samples in a magnetic field of 15 kOe have been determined from the hysteresis loops. It was found that magnetizations of the milled samples were smaller than the magnetization of the unmilled samples. This decrease, based on core-shell model, has been attributed to the presence of a magnetically dead layer on the particles' surface of the milled powders. In addition, the magnetizations of the milled samples decrease with the increase in x value. This decrease has been discussed according to site occupation of the substituted cations on the sublattices. The discussion also supports the increase of lattice parameters and the decrease of Curie temperature as x increases.
机译:一系列M型六方锶铁氧体粉末,根据式SrFe_9(Mn_(0.5),用Mn〜(2 +),Ni〜(2+)和Ti〜(4+)离子代替Fe〜(3+)离子已经通过常规陶瓷方法制备了-x)Ni_xTi_(0.5))_ 3O_(19),其中x的范围为0至0.5,步长为0.1。为了获得纳米颗粒,将获得的粉末在高能SPEX研磨机中研磨1小时。未研磨和研磨粉末的XRD研究表明,所制备的样品均为单相六方铁氧体。从XRD数据和Scherrer公式确定粉末的晶格参数和平均微晶尺寸。用透射电子显微镜(TEM)分析其结构。已从磁滞回线确定了在15 kOe磁场中样品的室温磁化强度和矫顽力。发现研磨样品的磁化强度小于未研磨样品的磁化强度。基于核-壳模型的这种减少归因于在研磨粉末的颗粒表面上存在磁死层。另外,研磨样品的磁化强度随x值的增加而降低。已经根据亚晶格上取代阳离子的位点占有量讨论了这种减少。讨论还支持随着x的增加,晶格参数的增加和居里温度的降低。

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