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MnRhBi3: A Cleavable Antiferromagnetic Metal

    Eleanor M. Clements | Oak Ridge National Laboratory
    Dmitry Ovchinnikov | University of Kansas
    Parul R. Raghuvanshi | Oak Ridge National Laboratory
    Valentino R. Cooper | Oak Ridge National Laboratory
    Satoshi Okamoto | Oak Ridge National Laboratory
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Description

This dataset contains DFT input and output files supporting the theoretical modeling in the associated publication (Chem. Mater. 2024, 36, 11306-11316). The calculations characterize MnRhBi3, an orthorhombic (Cmmm) van der Waals-layered intermetallic compound that cleaves easily between neighboring Bi layers. The dataset is organized into three calculation types: (i) Bulk: Structural relaxations of the periodic MnRhBi3 crystal in antiferromagnetic (AFM) and ferromagnetic (FM) configurations, using the vdW-DF-optB86b functional. These provide the equilibrium lattice constants, magnetic energy differences (AFM is 0.5 meV/f.u. lower than FM), and magnetic moments (4.4 µB/Mn, 0.17 µB/Rh, 0.18 µB/Bi) reported in Table 1 of the main text. (ii) Slab: Same magnetic configurations computed with an 18 Ang vacuum layer introduced between Bi layers, used to calculate the cleavage energy Ec = 0.56 J/m2 (AFM) and 0.57 J/m2 (FM), establishing MnRhBi3 as a van der Waals-layered material comparable to graphite, MoS2, and CrI3. (iii) ELF: Single-point calculation on the relaxed bulk AFM geometry with LELF=.TRUE., producing the ELFCAR file used to generate electron localization function isosurfaces and contour maps (Fig. 2, main text) showing Bi lone pairs directed into the van der Waals gaps. All folders contain CONTCAR, INCAR, KPOINTS, OUTCAR, and POSCAR. The ELF/ folder additionally contains ELFCAR. Calculations were performed using VASP 6.3.2 with PBE + vdW-DF-optB86b, PAW potentials, and an energy cutoff of 800 eV.

Funding Information

DOE Contract Number

AC05-00OR22725

Originating Research Organization

Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)

Sponsoring Organization

Office of Science (SC)

Details

Release Date

August 17, 2026

Subject

CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS, CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY, MATERIALS SCIENCE

Keywords

density functional theory, antiferromagnetism

Dataset

Dataset Type

ND Numeric Data

Software

VASP 6.3.2+, VESTA, Python 3.8+

Cite This Dataset:

Clements, E., Ovchinnikov, D., Raghuvanshi, P., Cooper, V., Okamoto, S., Christianson, A., Paddison, J., Ortiz, B., Calder, S., May, A., Xu, X., Yan, J., McGuire, M. (2026). MnRhBi3: A Cleavable Antiferromagnetic Metal. Oak Ridge National Laboratory. https://doi.org/10.13139/ORNLNCCS/3028491.

Acknowledgements

This work was carried out [in part] at Oak Ridge National Laboratory, managed by UT-Battelle, LLC for the U.S. Department of Energy under contract DE-AC05-00OR22725.