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Journal ArticleDOI

Magnetic interactions in R2Fe17-xAlx compounds (R = Ho, Y)

TLDR
In this article, the temperature and field dependence at 4.2 K of the magnetization of Y2Fe17−xAlx and Ho2Fe 17−xalx (x ≤ 10) compounds has been studied.
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This article is published in Journal of Magnetism and Magnetic Materials.The article was published on 1992-10-01. It has received 125 citations till now. The article focuses on the topics: Magnetization & Coupling constant.

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Citations
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Ferromagnetic properties of U2M17−yGey systems (M ≡ Fe, Co)

TL;DR: The ternary germanides U 2 M 17− y Ge y were synthesized with 2 ⩽ y ⌽ 3 for M ≡ Fe and 1.3 ⎉ y⌉ 3 for m ≡ Co.
Journal ArticleDOI

Investigation of the hard magnetic properties of Sm2Fe17 compounds with Ga substitutions

TL;DR: In this article, the substitution of Ga for Fe in Sm2Fe17 can yield a room temperature uniaxial anisotropy while increasing the Curie temperature by approximately 190 K.
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Phase behavior in the system LaxSr1−xMnO(5+x)/2 (x=0.8–1.0) with trivalent state of manganese ion

TL;DR: In this article, the oxygen defect perovskite La x Sr 1− x MnO (5+ x )/2 phases (x = 0.8-1.0) with valence state adjusted to trivalent manganese ion have been prepared by reducing oxygen content from the series of La xsr 1−x MnO 3 solid solutions.
Journal ArticleDOI

Effect of Si substitution in ferromagnetic Pr2Fe17: a magnetocaloric material with zero thermal expansion operative at high temperature.

TL;DR: The temperature dependent behaviour of magnetization (M) and the structural parameters suggest that the compound undergoes a second order phase transition from a paramagnetic to a ferromagnetic state at TC = 390 K, driven by an increase in bond length between iron atoms at 6c sites.
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Magnetic and structural properties of Nd2Fe17−xMx (M=Cu, Cr, V, Nb, and Zr) compounds

TL;DR: In this article, the structural and magnetic properties of Nd 2 Fe 17− x M x (M =Cu, Cr, V, Nb and Zr), where x = 0, 0.5, 1, 1.5.
References
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Improved magnetic properties by treatment of iron-based rare earth intermetallic compounds in anmonia

TL;DR: In this paper, the R2Ni17 and R2Fe17C intermetallic compounds were found to absorb approximately two atoms of nitrogen per formula unit on heating in ammonia or nitrogen.
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Intermetallic compounds of rare earths and non-magnetic metals

TL;DR: A review of the physical properties, composition and crystal structure of intermetallic compounds formed between rare-earth elements and non-magnetic metals, with emphasis on the magnetic properties is given in this article.
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Magnetic and crystallographic characteristics of rare-earth ternary carbides derived from R2Fe17 compounds

TL;DR: In this paper, the magnetic properties of the rhombohedral R 2 Fe 17 C compounds with R = Ce, Pr, Sm, Gd, Tb, Dy, Ho or Y were studied on magnetically aligned powders in field strengths up to 35 T.
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Strength of the rare-earth-transition-metal exchange coupling in hard magnetic materials, an experimental approach based on high-field magnetisation measurements: Application to Er2Fe14B

TL;DR: In this article, a new experimental technique is presented to determine the intersublattice molecular-field coefficient, n RT, in heavy rare earth-transition-metal intermetallic compounds.
Journal ArticleDOI

Rare-earth transition-metal intermetallics

TL;DR: In this article, the authors investigated the effect of the R-4f moments on the conduction band system of RFe 2 compounds and showed that the effect depends on the local exchange interaction between rare-earth and transition-metal moments.
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