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首页> 外文期刊>RSC Advances >Related magnetic properties of CoFe2O4 cobalt ferrite particles synthesised by the polyol method with NaBH4 and heat treatment: new micro and nanoscale structures
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Related magnetic properties of CoFe2O4 cobalt ferrite particles synthesised by the polyol method with NaBH4 and heat treatment: new micro and nanoscale structures

机译:多元醇法与NaBH4合成并热处理的CoFe2O4钴铁氧体颗粒的相关磁性能:新的微米和纳米级结构

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In this contribution, hierarchical CoFe2O4 particles are successfully prepared via a modified polyol elaboration method with NaBH4 and a proposed heat treatment process. Here, new as-prepared CoFe2O4 particles with sizes in the range of 5 mm show highly uniform characteristics in their size, shape and cubic spinel crystal structure according to X-ray diffraction (XRD), whole pattern fitting and Rietveld refinement, X-ray photoelectron spectroscopy (XPS), and scanning electron microscopy (SEM). We discovered that the CoFe2O4 microparticles prepared in the certain size range of 5 mm show exciting configurations of grain and grain boundaries under particle heat treatment at the high temperature 900 degrees C. Finally, CoFe2O4 ferrite particles with various well-defined micro and nanoscale structures were produced after appropriate heat treatment processes under high temperature, and which have a high coercive field, HC, around 416-888 Oe, and the highest saturation magnetization, MS, of about 74-91 emu g(-1) at room temperature (RT) for all of the as-prepared samples measured using a vibrating sample magnetometer (VSM). Here, the magnetic behavior has shown persuasive evidence that the desirable ferrimagnetic properties of CoFe2O4 oxides do not only depend on their size but also on the spinel structure of the CoFe2O4 oxides as well. Finally, the as-prepared CoFe2O4 particles with the formula CoO center dot Fe2O3 were regarded as the best inverse ferrimagnetic materials with magnetic parameters of HC at 896 Oe, MR/MS squareness around 0.420, and MS around 92 emu g(-1) at 20 kOe for the downward part of the hysteresis loop.
机译:在这一贡献中,通过使用NaBH4的改进多元醇精加工方法和拟议的热处理工艺成功制备了分层CoFe2O4颗粒。在此,根据X射线衍射(XRD),整体图案拟合和Rietveld精修,X射线,新制备的尺寸为5 mm的CoFe2O4颗粒在尺寸,形状和立方尖晶石晶体结构方面显示出高度均匀的特性。光电子能谱(XPS)和扫描电子显微镜(SEM)。我们发现,在5mm的特定尺寸范围内制备的CoFe2O4微粒在900摄氏度的高温下进行颗粒热处理后,显示出令人兴奋的晶粒和晶界构型。最后,获得了具有明确定义的微米和纳米级结构的CoFe2O4铁氧体在高温下经过适当的热处理过程后产生的,并且在室温下具有高矫顽力场HC,约416-888 Oe,最高饱和磁化强度MS约为74-91 emu g(-1) )中使用振动样品磁力计(VSM)测量的所有样品。在此,磁性表现出有说服力的证据,表明CoFe2O4氧化物的理想亚铁磁性不仅取决于其尺寸,而且还取决于CoFe2O4氧化物的尖晶石结构。最后,制备的具有式CoO中心点Fe2O3的CoFe2O4颗粒被认为是最佳的反亚铁磁性材料,其磁参数为HC在896 Oe,MR / MS矩形度在0.420左右,MS在92 emu g(-1)在磁滞回线的下部为20 kOe。

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