Magnetic Properties of the Quasi-1D Magnesium Lanthanide Borates Mg$Ln$B$_5$O$_{10}$
Lachlan G. M. Rooney, Si\^an E. Dutton, Nicola D. Kelly

TL;DR
This study investigates the magnetic properties of Mg$Ln$B$_5$O$_{10}$ compounds with quasi-1D lanthanide ion arrangements, revealing diverse magnetic behaviors and potential for low-temperature magnetic refrigeration applications.
Contribution
It introduces a new family of quasi-1D lanthanide borates synthesized via sol-gel, characterizes their magnetic properties, and identifies candidates for quasi-1D magnetism and magnetic refrigeration.
Findings
Most compounds follow Curie-Weiss law at high temperatures.
Nd, Tb, Dy, Ho show Ising spin saturation signatures.
MgGdB$_5$O$_{10}$ exhibits significant magnetocaloric effect.
Abstract
Lanthanide borates are widely studied for their optical and magnetic properties. A wide variety of structures are known with 3, 2, 1 and 0 dimensional connectivity of lanthanide ions. Here, we explore MgBO, with a quasi-1D arrangement of the ions. Polycrystalline samples of MgBO ( = La, Pr, Nd, Sm--Er) were synthesised with high purity via a sol-gel method. Powder X-ray diffraction data confirmed the reported monoclinic space group (). The magnetic ions in MgBO form relatively isolated zig-zag chains parallel to the axis. Magnetic susceptibility and isothermal magnetisation were measured: all samples except (Eu, Sm) fit the Curie-Weiss Law in isothermal magnetisation at high temperatures, in broad agreement with theoretical expectations. (Nd, Tb, Dy, Ho) exhibit signatures characteristic of Ising…
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