English

Magnetic order and spin liquid behavior in [Mo3+]^{11+} triangular magnets

Strongly Correlated Electrons 2022-04-13 v1

Abstract

Molecular magnets based on [Mo3_3]11+^{11+} units with one unpaired electron per trimer have attracted recent interest due to the identification of quantum spin liquid candidacy in some family members. Here, we present comprehensive measurements on polycrystalline samples of ZnScMo3_3O8_8, MgScMo3_3O8_8, and Na3_3Sc2_2Mo5_5O16_{16} with the same Mo3_3O13_{13} magnetic building blocks. The crystal structures are characterized with x-ray or neutron powder diffraction and the magnetic ground states are determined by performing ac and dc susceptibility, specific heat, neutron powder diffraction, and μ\muSR measurements. Our work indicates that ZnScMo3_3O8_8 and MgScMo3_3O8_8 have ferromagnetic Curie-Weiss temperatures of 18.5 K and 11.9 K, ordered ground states with net moments (low-moment ferromagnetism or canted antiferromagnetism), and zero field ordering temperatures of Tc=T_c = 6 K and << 2 K respectively. On the other hand, Na3_3Sc2_2Mo5_5O16_{16} hosts a dynamical magnetic ground state with no evidence for magnetic ordering or spin freezing down to 20 mK despite an antiferromagnetic Curie-Weiss temperature of -36.2 K, and therefore is a candidate for quantum spin liquid behavior. By comparing the present results to past work on the same family of materials, we construct a phase diagram which illustrates that the magnetic ground states of these Mo-based molecular magnets are very sensitive to small changes in the nearest neighbor Mo-Mo distance.

Keywords

Cite

@article{arxiv.2204.05377,
  title  = {Magnetic order and spin liquid behavior in [Mo3+]^{11+} triangular magnets},
  author = {Q. Chen and R. Sinclair and A. Akbari-Sharbaf and Q. Huang and Z. Dun and E. S. Choi and M. Mourigal and A. Verrier and R. Rouane and X. Bazier-Matte and J. A. Quilliam and A. A. Aczel and H. D. Zhou},
  journal= {arXiv preprint arXiv:2204.05377},
  year   = {2022}
}

Comments

13 pages, 9 figures, accepted for publication in Physical Review Materials

R2 v1 2026-06-24T10:45:02.455Z