首页> 外文OA文献 >Structure et propriétés physiques de composés magnétiques de type RT12B6 et (Hf,Ta)Fe2 et leur dépendance en fonction de la pression (physique ou chimique) (R=élément de terre rare et T=élément de transition 3d)
【2h】

Structure et propriétés physiques de composés magnétiques de type RT12B6 et (Hf,Ta)Fe2 et leur dépendance en fonction de la pression (physique ou chimique) (R=élément de terre rare et T=élément de transition 3d)

机译:RT12B6和(Hf,Ta)Fe2型磁性化合物的结构和物理性质及其与压力的关系(物理或化学)(R =稀土元素和T = 3d过渡元素)

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Our multidisciplinary study includes the synthesis of intermetallic compounds and the characterization of their structural and magnetic properties. Our work has focused on RT12B6 borides where R is a rare earth element or yttrium and T a 3d transition metal as well as (Hf, Ta)Fe2 Laves phases. In order to understand the physical properties of these compounds, we have implemented various external variables (temperature, magnetic field, pressure) as well as internal variables such as the chemical pressure due to the substitution of one element with another. Through this experimental work, we investigated the magnetic properties of RCo12B6 compounds. The magnetic properties of these compounds present both an ordering temperature which is quasi independent of the rare earth element R and a remarkably small magnetic moment of Co. We show that the R-Co exchange interactions are more than an order of magnitude smaller that the Co-Co occurring in these compounds. We demonstrated that the iron for cobalt substitution in RCo12B6 compounds gives rise to a preferential substitution scheme. Combining Mössbauer spectroscopy and neutron diffraction, we have found that the magnetic ordering direction is extremely sensitive to Fe/Co substitution. LaFe12B6 compound presents remarkable magnetic properties with an antiferromagnetic (AFM) ground state but it can be transformed into a ferromagnetic (FM) state by the applied magnetic field or by the temperature. At low temperature, the field-induced AFM-FM metamagnetic transition has a large hysteresis and exhibits ultra sharp jumps as shown in our magnetic, magnetostriction and transport measurements. The metamagnetic transition is also very sensitive to the applied pressure. LaFe12B6 intermetallic compound shows a large linear thermal expansion, a huge volume magnetostriction and both normal and inverse magnetocaloric effects. The effect of cobalt or manganese for iron substitution or cerium for lanthanum substitution on the structural and magnetic properties was deeply investigated. Co/Fe or Mn/Fe substitution in both cases leads to a strong increase of the critical field of the metamagnetic transition. However Ce/La substitution reduces strongly the transition field. The investigation of LaFe12B6 amorphous alloy, prepared by melt spinning, shows radically different magnetic properties since the amorphous phase becomes ferromagnetic with a high Curie temperature. Finally we studied the intrinsic magnetic properties of the Hf1-xTaxFe2 system for which the solid solution is complete. The analysis of all the measurements highlighted original behaviours of the iron magnetism and this both in the ordered state and in the paramagnetic state. These remarkable properties are attributed to the itinerant character of the Fe 3d band magnetism, which gives rise to the metamagnetic transition between the AFM and FM states.
机译:我们的多学科研究包括金属间化合物的合成及其结构和磁性的表征。我们的工作集中在RT12B6硼化物上,其中R是稀土元素或钇,T是3d过渡金属以及(Hf,Ta)Fe2 Laves相。为了理解这些化合物的物理性质,我们实现了各种外部变量(温度,磁场,压力)以及内部变量,例如由于一种元素被另一种元素取代而引起的化学压力。通过这项实验工作,我们研究了RCo12B6化合物的磁性。这些化合物的磁性能既呈现出与稀土元素R几乎不相关的有序温度,又呈现出Co的极小磁矩。我们表明,R-Co交换相互作用比Co的相变小一个数量级。 -Co存在于这些化合物中。我们证明RCo12B6化合物中用于钴取代的铁产生了优先取代方案。结合穆斯堡尔光谱和中子衍射,我们发现磁有序方向对Fe / Co替代极为敏感。 LaFe12B6化合物具有出色的磁性,具有反铁磁(AFM)基态,但可以通过施加的磁场或温度转变为铁磁(FM)状态。在低温下,磁场引起的AFM-FM超磁跃变具有较大的磁滞现象,并且表现出超尖跃点,如我们的磁,磁致伸缩和传输测量结果所示。亚磁跃迁对施加的压力也非常敏感。 LaFe12B6金属间化合物显示出大的线性热膨胀,巨大的磁致伸缩体积以及正磁和反磁热效应。深入研究了钴或锰替代铁或铈替代镧对结构和磁性能的影响。在两种情况下,Co / Fe或Mn / Fe的替代都会导致超磁跃迁的临界场的强烈增加。然而,Ce / La取代会大大降低过渡场。通过熔融纺丝制备的LaFe12B6非晶态合金的研究表明,由于非晶态相在居里温度高时变成铁磁性,因此其磁性能存在根本不同。最后,我们研究了固溶完全的Hf1-xTaxFe2系统的固有磁性能。对所有测量的分析突出了铁磁性的原始行为,并且在有序状态和顺磁性状态下均如此。这些非凡的特性归因于Fe 3d带磁性的流动特性,这引起了AFM和FM状态之间的亚磁跃迁。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号