paper

Impact of Oxidation State on the Valence-bond-glass Physics in the lithium-intercalated MoO Cluster Mott Insulators

arXiv:2312.11342 · doi:10.1103/PhysRevB.109.024405

Abstract

We have successfully synthesized four MoO-type cluster Mott insulators (CMI) by intercalating lithium into nonmagnetic precursors to regulate the Mo cluster valence. The resulting materials are LiMoO ( = Sc, Y, Lu) and LiZnMoO. Our magnetic susceptibility measurements revealed that these materials display characteristics akin to a valence bond glass state and suggest the presence of short-range ordering when the Mo cluster valence approximates its ideal value. These findings challenge the prevailing belief that the plaquette charge ordering state is an inherent feature of MoO-type CMI. Instead, they underscore the importance of Mo cluster valence in determining the physical properties of these systems. These insights furnish a fresh understanding of the MoO-type CMI and open new research opportunities in highly frustrated magnetism.

13page, 11figures, manuscript accepted for publication in Physical Review B

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