Coexistence of Long-Range Magnetic Order and Magnetic Frustration of a Novel Two-Dimensional S = 1/2 Structure: Na2Cu3(SeO3)4

Author:

Williams Emily D.1,Taddei Keith M.2,Ranmohotti Kulugammana G. S.3,Narayanan Narendirakumar4,Heitmann Thomas45,Kolis Joseph W.1,Sanjeewa Liurukara D.46ORCID

Affiliation:

1. Department of Chemistry and Center for Optical Materials Science and Engineering Technologies (COMSET), Clemson University, Clemson, SC 29634, USA

2. X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA

3. Division of Science, Mathematics and Technology, Governors State University, University Park, IL 60484-0975, USA

4. University of Missouri Research Reactor (MURR), University of Missouri, Columbia, MO 65211, USA

5. Department of Physics and Astronomy, University of Missouri, Columbia, MO 65211, USA

6. Department of Chemistry, University of Missouri, Columbia, MO 65211, USA

Abstract

Novel quantum materials offer the opportunity to expand next-generation computers, high-precision sensors, and new energy technologies. Among the most important factors influencing the development of quantum materials research is the ability of inorganic and materials chemists to grow high-quality single crystals. Here, the synthesis, structure characterization and magnetic properties of Na2Cu3(SeO3)4 are reported. It exhibits a novel two-dimensional (2D) structure with isolated layers of Cu nets. Single crystals of Na2Cu3(SeO3)4 were grown using a low-temperature hydrothermal method. Single-crystal X-ray diffraction reveals that Na2Cu3(SeO3)4 crystallizes in the monoclinic crystal system and has space group symmetry of P21/n (No.14) with a unit cell of a = 8.1704(4) Å, b = 5.1659(2) Å, c = 14.7406(6) Å, β = 100.86(2), V = 611.01(5) Å3 and Z = 2. Na2Cu3(SeO3)4 comprises a 2D Cu-O-Cu lattice containing two unique copper sites, a CuO6 octahedra and a CuO5 square pyramid. The SeO3 groups bridge the 2D Cu-O-Cu layers isolating the neighboring Cu-O-Cu layers, thereby enhancing their 2D nature. Magnetic properties were determined by measuring the magnetic susceptibility of an array of randomly oriented single crystals of Na2Cu3(SeO3)4. The temperature-dependent magnetic measurement shows an antiferromagnetic transition at TN = 4 K. These results suggest the fruitfulness of hydrothermal synthesis in achieving novel quantum materials and encourage future work on the chemistry of transition metal selenite.

Funder

University of Missouri Research Council Grant

NSF DMR

Publisher

MDPI AG

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