paper

Magnetic ordering of the MoO-type cluster Mott insulator NaSc(MoO)MoO with spin-1/2 triangular lattice prepared via optimal synthesis

arXiv:2407.20493 · doi:10.1103/PhysRevMaterials.8.084409

Abstract

We detail the optimized synthesis of the MoO-type cluster Mott insulator (CMI) NaSc(MoO)MoO, which has been considered a candidate for realizing the spin liquid ground state. The optimized NaSc(MoO)MoO, characterized by x-ray diffraction, energy-dispersive x-ray spectroscopy, and magnetic and heat capacity measurements, exhibited an effective magnetic moment close to the ideal 1.73 for spin and magnetic ordering at 5 K. These observations categorize NaSc(MoO)MoO as the second MoO-type CMI to achieve a magnetic ground state, following LiInMoO. They highlight the stabilization of the magnetic ground state over the theoretically anticipated quantum spin liquid state through precise valence and chemical disorder tuning. Our findings challenge the existing theory that the magnetic ground state of MoO-type CMIs is determined by the breathing parameter, instead showing that magnetic order is suppressed by spin defects. This study underscores the crucial role of chemical precision in investigating quantum magnetism. It suggests that precise tuning of valence states could induce magnetic ordering in previously nonmagnetic MoO-type CMIs. Additionally, the negative findings regarding the existence of quantum spin liquids highlight the need for applied research and a reevaluation of our fundamental understanding of electronic states from both theoretical and experimental aspects.

8 pages, 5 figures, accepted in Physical Review Materials

References in corpus (5)