首页> 外文期刊>Journal of Applied Physics >Influence of nonmagnetic Al ions on magnetoresistance of double-perovskite Sr_2Fe_(1-x)Al_xMoO_6 (0 ≤ x ≤ 0.30)
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Influence of nonmagnetic Al ions on magnetoresistance of double-perovskite Sr_2Fe_(1-x)Al_xMoO_6 (0 ≤ x ≤ 0.30)

机译:非磁性铝离子对双钙钛矿Sr_2Fe_(1-x)Al_xMoO_6(0≤x≤0.30)的磁阻的影响

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摘要

The structural, magnetic, and magnetoresistance properties of the double-perovskite series Sr_2Fe_(1-x)Al_xMoO_6 (0 ≤ x ≤ 30) were systematically investigated in order to clarify the influence of nonmagnetic Al ions on the magnetoresistance. The structural refinements of these samples show that the degree of cationic order increases gradually from 88.5% for x=0 to 92% for x=0.30 without any change in the crystal structure. The magnetization measurements reveal that the substitution of nonmagnetic Al ion for Fe ion enhances the magnetic moment per Fe ion significantly. In addition, the magnetic-field dependence of magnetization and magnetoresistance of these Sr_2Fe_(1-x)Al_xMoO_6 samples were all fitted excellently by taking into account the contributions from ferromagnetic-coupled Fe-O-Mo region and nonferromagnetic-coupled regions. The fitting results indicate that the low-field magnetoresistance can be greatly enhanced due to the separation of the cationic-ordered Fe-O-Mo regions by the paramagnetic Mo-O-Al-O-Mo chains introduced through Al doping. Furthermore, doping nonmagnetic Al ions also suppress the formation of antiferromagnetic Fe-O-Fe antiphase boundaries, and then lead to the improvement of cation ordering and the reduction of magnetoresistance under high field.
机译:为了阐明非磁性Al离子对磁阻的影响,系统地研究了双钙钛矿系列Sr_2Fe_(1-x)Al_xMoO_6(0≤x≤30)的结构,磁性和磁阻特性。这些样品的结构改进表明,阳离子级数从x = 0的88.5%逐渐增加到x = 0.30的92%,而晶体结构没有任何变化。磁化测量表明,用非磁性的Al离子代替Fe离子可以显着增强每个Fe离子的磁矩。此外,这些Sr_2Fe_(1-x)Al_xMoO_6样品的磁化强度与磁阻的磁场依赖性都得到了很好的拟合,同时考虑了铁磁耦合的Fe-O-Mo区域和非铁磁耦合的区域的贡献。拟合结果表明,由于通过Al掺杂引入的顺磁性Mo-O-Al-O-Mo链将阳离子有序的Fe-O-Mo区分开,因此可以大大增强低场磁阻。此外,掺杂非磁性Al离子还抑制反铁磁性Fe-O-Fe反相边界的形成,从而导致阳离子序的改善和在高磁场下磁阻的降低。

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