高磁场下r2fe14b型化合物的纳米粉末:取代原子和间隙原子对亚晶格间交换相互作用的影响

M. Paukov, L. Ivanov, I. Tereshina, E. Tereshina-Chitrova, D. Gorbunov, A. Andreev, A. Pyatakov, S. Granovsky, M. Doerr, H. Drulis
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引用次数: 0

摘要

r2fe14b金属间化合物的基本磁特性对轻元素的原子取代和间隙吸收高度敏感。本文将两者结合起来,研究了R-亚晶格的取代和氢吸收对(RR ') 2fe 14 bhx (R为Tm或Er, R '为Nd)在高达58T磁场下磁化强度的影响。制备了(Tm 0.5 Nd 0.5) 2fe 14b和(Er 0.5 Nd 0.5) 2fe 14b。采用直接吸氢法制备了含氢的(R 0.5 Nd 0.5) 2 Fe 14 bhx化合物,并在纳米粉末上对母合金及其氢化物进行了磁性测量。通过分析高场磁化数据,估计了(Tm 0.5 Nd 0.5) 2fe 14b、(Er 0.5 Nd 0.5) 2fe 14b及其氢化物的亚晶格间耦合强度。结果表明,氢化作用可使亚晶格间交换作用减弱45%。(Tm 0.5 Nd 0.5) 2fe 14b,最大氢含量为5.5 at.H/f.u。,在55t左右达到场致铁磁态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanopowders of R2Fe14B-type compounds in high magnetic fields: The effects of substitutional and interstitial atoms on inter-sublattice exchange interaction
The fundamental magnetic characteristics of R 2 Fe 14 B intermetallics are highly sensitive to atomic substitutions and interstitial absorption of light elements. In this work, both were combined, and the influence of the substitutions in the R-sublattice and hydrogen absorption on the magnetization of (RR’) 2 Fe 14 BH x (R is Tm or Er, and R’ is Nd) in magnetic fields up to 58T was studied. (Tm 0.5 Nd 0.5 ) 2 Fe 14 B and (Er 0.5 Nd 0.5 ) 2 Fe 14 B were prepared. By using direct hydrogen absorption, (R 0.5 Nd 0.5 ) 2 Fe 14 BH x compounds were obtained with hydrogen content Magnetic measurements of both the parent alloys and their hydrides were carried out on nanopowders. The strength of the inter-sublattice coupling in (Tm 0.5 Nd 0.5 ) 2 Fe 14 B, (Er 0.5 Nd 0.5 ) 2 Fe 14 B and their hydrides is estimated by analysing high-field magnetization data. Itis shown that hydrogenation weakens the inter-sublattice exchange interaction up to 45 %. (Tm 0.5 Nd 0.5 ) 2 Fe 14 B, with the maximum hydrogen content of 5.5 at.H/f.u., reaches the field-induced ferromagnetic state at about 55 T.
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