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Journal ArticleDOI

Magnetic properties and magnetic structures of the CeScSi-type RMgPb (R¼Ce-Nd, Sm, Gd-Tm) compounds

TLDR
In this paper, powder X-ray diffraction, magnetic measurements and neutron powder diffraction on the CeScSi-type ternary magnesium plumbides RMgPb (R=Ce-Nd, Sm, Gd-Tm) are reported.
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This article is published in Journal of Magnetism and Magnetic Materials.The article was published on 2012-09-01. It has received 7 citations till now. The article focuses on the topics: Paramagnetism & Magnetization.

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MAGNDATA: towards a database of magnetic structures. I. The commensurate case

TL;DR: A free web page under the name MAGNDATA, which provides detailed quantitative information on more than 400 published magnetic structures, has been made available at the Bilbao Crystallographic Server (http://www.cryst.ehu.es).
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Equiatomic cerium intermetallics CeXX′ with two p elements

TL;DR: In this article, the equiatomic CeXX′ phases (X and X′ = elements of the 3ʳᵈ, 4ᵃ, or 5ᵃ main group) extend the large series of CeTX intermetallics (T = electron-rich transition metal).
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Hydrogen Insertion in the Intermetallic GdScGe: A Drastic Reduction of the Dimensionality of the Magnetic and Transport Properties.

TL;DR: It is shown for the first time for this family of materials that hydrogen insertion reduces the dimensionality of the magnetic and transport properties from 3D to quasi-2D which results in a vanishing of the ferromagnetic order and a change of the metallic conduction behavior to a nonmetallic one.
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Physical properties and possible applications of gold-based rare earth intermetallics (R-Au): A review

TL;DR: In this paper, the physical properties of rare-earth-gold equiatomic R-Au intermetallics (R= Ce, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er, Tm, Yb and Lu) are explored.
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Tetragonal to triclinic structural transition in the prototypical CeScSi induced by a two-step magnetic ordering: a temperature-dependent neutron diffraction study of CeScSi, CeScGe and LaScSi.

TL;DR: Magnetic symmetry analysis shows that the canted structure would not be allowed in the I4/mmm space group; this result further confirms the structural transition and suggests a magnetostructural origin of this structural distortion.
References
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Magnetic properties of the CeGe1−xSix series studied by powder neutron diffraction and μSR-measurements

TL;DR: In this article, the antiferromagnetic ordering in orthorhombic (Pnma) CeGe1−xSix pseudobinary series was studied by powder neutron diffraction and μSR measurements.
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Magnetic properties of the ternary RMgSn (R = Pr, Nd, Sm, Gd–Tm): First series of antiferromagnetic CeScSi-type structure compounds

TL;DR: The equiatomic ternary RMgSn compounds crystallize in the CeScSi (Pr, Nd, Sm, Gd-Tm), TiNiSi (Ce, Pr) or ZrNiAl (Yb) type structures.
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Magnetic properties of CeFeSi-type RTiSi compounds (R=Gd–Tm, Lu, Y) from magnetic measurements and neutron diffraction

TL;DR: In this article, the authors showed that the CeFeSi-type (P4/nmm) RTiSi series is limited to the heaviest rare-earth elements (R=Gd-Tm, Lu, Y).
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Magnetic structures of the CeScSi-type RZrSb compounds (R = Tb, Er)

TL;DR: In this paper, the magnetic properties of the RZrSb compounds were investigated by neutron diffraction experiments and the results were compared with those obtained for the closely related RTGe (Rǫ, Er, Tb, Dy, Ho and Er) CeFeSi-type and CeScSi type compounds.
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A magnetic study of the CeScSi-type RZrSb compounds (R=Gd–Tm). Large coercive field at low temperature in TbZrSb and DyZrSb

TL;DR: X-ray single crystal refinement performed on the GdZrSb and HoZRSb compounds confirms the CeScSi-type structure for the RZ rSb series.
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