Synthesis, structure and magnetic properties of rare-earth REMgAl11O19 (RE = Pr, Nd) compounds with two-dimensional triangular lattice

2019 
Abstract We report the synthesis, crystal structure and magnetic properties of Rare-earth hexaaluminates REMgAl 11 O 19 (RE = Pr, Nd) crystallized in a hexagonal structure with space group P6 3 /mmc, where the magnetically coupled rare-earth ions form perfect two-dimensional triangular layers well separated along c -axis. The magnetic susceptibilities reveal the dominant antiferromagnetic (AFM) interactions and no magnetic ordering down to 2 K with Curie Weiss temperature ( θ C W ) θ C W  = −6.4 K and θ C W  = -3.4 K for RE = Pr and Nd, respectively. Furthermore, the AFM interactions are robust against the nonmagnetic dilution by doping Lanthanum (La 3+ ) ions. The analysis of X-band electron spin resonance (ESR) spectra also supports the existence of AFM interactions in these two compounds. Our studies reveal a promising platform to investigate novel magnetic ground states in two-dimensional triangular lattice.
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