English

Antiferromagnetic Order and Spin-Canting Transition in the Corrugated Square Net Compound Cu$_3$(TeO$_4$)(SO$_4$)$\cdot$H$_2$O

Strongly Correlated Electrons 2021-07-05 v1 Materials Science Superconductivity

Abstract

Strongly correlated electrons in layered perovskite structures have been the birthplace of high-temperature superconductivity, spin liquid, and quantum criticality. Specifically, the cuprate materials with layered structures made of corner sharing square planar CuO4_4 units have been intensely studied due to their Mott insulating grounds state which leads to high-temperature superconductivity upon doping. Identifying new compounds with similar lattice and electronic structures has become a challenge in solid state chemistry. Here, we report the hydrothermal crystal growth of a new copper tellurite sulfate Cu3_3(TeO4_4)(SO4_4)\cdotH2_2O, a promising alternative to layered perovskites. The orthorhombic phase (space group PnmaPnma) is made of corrugated layers of corner-sharing CuO4_4 square-planar units that are edge-shared with TeO4_4 units. The layers are linked by slabs of corner-sharing CuO4_4 and SO4_4. Using both the bond valence sum analysis and magnetization data, we find purely Cu2+^{2+} ions within the layers, but a mixed valence of Cu2+^{2+}/Cu+{^+} between the layers. Cu3_3(TeO4_4)(SO4_4)\cdotH2_2O undergoes an antiferromagnetic transition at TNT_N=67 K marked by a peak in the magnetic susceptibility. Upon further cooling, a spin-canting transition occurs at TT^{\star}=12 K evidenced by a kink in the heat capacity. The spin-canting transition is explained based on a J1J_1-J2J_2 model of magnetic interactions, which is consistent with the slightly different in-plane super-exchange paths. We present Cu3_3(TeO4_4)(SO4_4)\cdotH2_2O as a promising platform for the future doping and strain experiments that could tune the Mott insulating ground state into superconducting or spin liquid states.

Keywords

Cite

@article{arxiv.2107.00765,
  title  = {Antiferromagnetic Order and Spin-Canting Transition in the Corrugated Square Net Compound Cu$_3$(TeO$_4$)(SO$_4$)$\cdot$H$_2$O},
  author = {Zhi-Cheng Wang and Kulatheepan Thanabalasingam and Jan P. Scheifers and Alenna Streeter and Gregory T. McCandless and Jonathan Gaudet and Craig M. Brown and Carlo U. Segre and k Julia Y. Chan and Fazel Tafti},
  journal= {arXiv preprint arXiv:2107.00765},
  year   = {2021}
}

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29 pages