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首页> 外文期刊>Journal of magnetism and magnetic materials >Presence of mixed magnetic phase in mechanically milled nanosized Co_(0.5)Zn_(0.5)Fe_2O_4: A study on structural, magnetic and hyperfine properties
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Presence of mixed magnetic phase in mechanically milled nanosized Co_(0.5)Zn_(0.5)Fe_2O_4: A study on structural, magnetic and hyperfine properties

机译:机械研磨的纳米Co_(0.5)Zn_(0.5)Fe_2O_4混合磁相的存在:结构,磁性和超细性质的研究

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In this paper, we have presented a detailed study on the effects of mechanical activation caused by high energy ball milling on the structural, magnetic and hyperfine properties of nanosized Co0.5Zn0.5Fe2O4 having three different particle sizes 63 (M1), 25 (M2) and 17 nm (M3) synthesized by chemical coprecipitation method. Characterization techniques like powder x-ray diffraction, high resolution transmission electron microscopy, dc magnetic measurements and Mossbauer spectroscopic techniques have been employed to examine M1, M2 and M3 thoroughly. All the three samples are cubic spinel ferrites with Fd (3) over barm symmetry. The lattice parameters of M1, M2 and M3 are 8.395, 8.391 and 8.375 angstrom, respectively. The particles constituting all the three samples possess both superparamagnetic and ferrimagnetic phases at room temperature. The values of blocking temperature of M1, M2 and M3 are 204, 210 and 220 K, respectively. The values of saturation magnetization of M1, M2 and M3 at 300 and 10 K are 56.8, 55.3, 51.5 emu g(-1) and 115.68, 113.84, 109.65 emu g(-1), respectively. The values of coercivity for M1, M2 and M3 at 10 K are 1395, 2190 and 1950 Oe, respectively. The theory of magnetic domains has been exploited to explicate the trend in coercivity. The cation distribution of M2 is (Zn0.482+Fe0.523+)(A)[(Co0.5+Zn0.02+Fe1.483+)-Zn-2-Fe-2](B)O-4. The effects of mechanical activation on cation redistribution and magnetic property of M2 have been investigated by infield Mossbauer spectroscopic measurements and verified by theoretical analysis of experimental results of Rietveld refinement of powder x-ray diffraction data in conjugation with dc magnetic study. The sample M2 is basically ferrimagnetic in nature possessing a slightly canted core surrounded by a disordered shell. It exhibits excellent memory effect in its dc magnetization measurement. The sample is capable of encoding, preserving and recalling binary numbers through magnetic field change. This property of the sample may be used to design magnetic coding and sensing devices.
机译:在本文中,我们对高能球磨引起的机械活化对具有三种不同粒径63(M1),25(M2)的纳米Co0.5Zn0.5Fe2O4的结构,磁性和超精细性能的影响进行了详细研究。 )和17 nm(M3)通过化学共沉淀法合成。粉末X射线衍射,高分辨率透射电子显微镜,直流磁测量和Mossbauer光谱技术等表征技术已用于彻底检查M1,M2和M3。所有这三个样品都是立方对称尖晶石铁氧体,Fd(3)超过巴姆对称性。 M1,M2和M3的晶格参数分别为8.395、8.391和8.375埃。构成所有三个样品的颗粒在室温下均具有超顺磁性和亚铁磁性相。 M1,M2和M3的粘连温度分别为204、210和220K。 M1,M2和M3在300和10 K时的饱和磁化强度分别为56.8、55.3、51.5 emu g(-1)和115.68、113.84、109.65 emu g(-1)。 M1,M2和M3在10 K时的矫顽力值分别为1395、2190和1950 Oe。磁畴理论已被用来阐明矫顽力的趋势。 M2的阳离子分布为(Zn0.482 + Fe0.523 +)(A)[(Co0.5 + Zn0.02 + Fe1.483 +)-Zn-2-Fe-2](B)O-4。通过场内Mossbauer光谱测量研究了机械活化对M2的阳离子再分布和磁性能的影响,并通过与直流磁研究相结合的粉末X射线衍射数据的Rietveld精制实验结果的理论分析验证了机械活化对M2的影响。样品M2本质上基本上是亚铁磁性的,具有被无序壳包围的稍微倾斜的核。它的直流磁化强度测量显示出出色的记忆效果。该样本能够通过磁场变化来编码,保留和调用二进制数。样品的这种性质可用于设计磁性编码和感测装置。

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