Relationship between polymorphic structures and magnetic properties of La$_{2-x}A'_{x}$Ni$_{7}$ compounds ($A$' = Sm, Gd)
Val\'erie Paul-Boncour, V\'eronique Charbonnier, Nicolas Madern, Lotfi, Bessais, Judith Monnier, Junxian Zhang

TL;DR
This study explores how polymorphic structures influence the magnetic properties of La$_{2-x}A'_{x}$Ni$_{7}$ compounds with Sm and Gd, revealing structure-dependent magnetic transitions and behaviors.
Contribution
It provides new insights into the relationship between polymorphic crystal structures and magnetic properties in La-Ni compounds with rare earth substitutions.
Findings
Polymorphic structures are related to stacking of subunits along the c-axis.
Magnetic transition temperatures increase with A' content.
La$_{2-x}$Sm$_{x}$Ni$_{7}$ behaves as a hard magnet, while La$_{2-x}$Gd$_{x}$Ni$_{7}$ is a soft ferrimagnet.
Abstract
In this study, the crystal structure and magnetic properties of LaNi compounds with magnetic rare earth elements (' = Sm, Gd) have been investigated combining X-ray powder diffraction and magnetic measurements. These intergrowth compounds crystallize in a mixture of 2 hexagonal (CeNi-type) and 3 rhombohedral (GdCo-type) polymorphic structures which are related to the stacking of [] and [] subunits along the -axis.The average cell volume decreases linearly versus ' content, whereas the ratio reaches a minimum at = 1, due to geometric constraints upon ' for La substitution between the two different subunits. The magnetic properties strongly depend on the structure type and the ' content. Hexagonal LaNi is a weak antiferromagnet (wAFM) at low field and temperature and undergoes…
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Taxonomy
TopicsRare-earth and actinide compounds · Magnetic Properties of Alloys · Magnetic and transport properties of perovskites and related materials
