English

GdWN$_3$ is a Nitride Perovskite

Materials Science 2024-09-20 v1 Strongly Correlated Electrons

Abstract

Nitride perovskites ABABN3_3 are an emerging and highly under-explored class of materials that are of interest due to their intriguing calculated ferroelectric, optoelectronic, and other functional properties. Incorporating novel AA-site cations is one strategy to tune and expand such properties; for example, Gd3+^{3+} is compelling due to its large magnetic moment, potentially leading to multiferroic behavior. However, the theoretically predicted ground state of GdWN3_3 is a non-perovskite monoclinic structure. Here, we experimentally show that GdWN3_3 crystallizes in a perovskite structure. High-throughput combinatorial sputtering with activated nitrogen is employed to synthesize thin films of Gd1x_{1-x}Wx_{x}N3y_{3-y} with low oxygen content within the bulk of the films. Ex-situ annealing crystallizes a polycrystalline perovskite phase in a narrow composition window near x=1x=1. LeBail fits of synchrotron grazing incidence wide angle X-ray scattering data are consistent with a perovskite ground-state structure. New density functional theory calculations that included antiferromagnetic configurations confirm that the ground-state structure of GdWN3_3 is a distorted PnmaPnma perovskite with antiferromagnetic ordering, in contrast to prior predictions. Initial property measurements find that GdWN3_3 is paramagnetic down to T=2T=2 K with antiferromagnetic correlations and that the absorption onset depends on cation stoichiometry. This work provides an important stepping stone towards the rapid expansion of the emerging family of nitride perovskites and towards our understanding of their potential multiferroic properties.

Keywords

Cite

@article{arxiv.2405.06060,
  title  = {GdWN$_3$ is a Nitride Perovskite},
  author = {Rebecca W. Smaha and John S. Mangum and Neha Yadav and Christopher L. Rom and Brian M. Wieliczka and Baptiste Julien and Andrew Treglia and Craig L. Perkins and Prashun Gorai and Sage R. Bauers and Andriy Zakutayev},
  journal= {arXiv preprint arXiv:2405.06060},
  year   = {2024}
}

Comments

16 pages, 4 figures