English

Accessible Chemical Space for Metal Nitride Perovskites

Materials Science 2023-09-19 v1

Abstract

Building on the extensive exploration of metal oxide and metal halide perovskites, metal nitride perovskites represent a largely unexplored class of materials. We report a multi-tier computational screening of this chemical space. From a pool of 3660 ABN3_3 compositions covering I-VIII, II-VII, III-VI and IV-V oxidation state combinations, 279 are predicted to be chemically feasible. The ground-state structures of the 25 most promising candidate compositions were explored through enumeration over octahedral tilt systems and global optimisation. We predict 12 dynamically and thermodynamically stable nitride perovskite materials, including YMoN3_3, YWN3_3, ZrTaN3_3, and LaMoN3_3. These feature significant electric polarisation and low predicted switching electric field, showing similarities with metal oxide perovskites and making them attractive for ferroelectric memory devices

Keywords

Cite

@article{arxiv.2304.05450,
  title  = {Accessible Chemical Space for Metal Nitride Perovskites},
  author = {Bastien F. Grosso and Daniel W. Davies and Bonan Zhu and Aron Walsh and David O. Scanlon},
  journal= {arXiv preprint arXiv:2304.05450},
  year   = {2023}
}