English

Topotactically induced oxygen vacancy order in nickelate single crystals

Materials Science 2023-06-06 v1 Strongly Correlated Electrons Superconductivity

Abstract

The strong structure-property coupling in rare-earth nickelates has spurred the realization of new quantum phases in rapid succession. Recently, topotactic transformations have provided a new platform for the controlled creation of oxygen vacancies and, therewith, for the exploitation of such coupling in nickelates. Here, we report the emergence of oxygen vacancy ordering in Pr0.92_{0.92}Ca0.08_{0.08}NiO2.75_{2.75} single crystals obtained via a topotactic reduction of the perovskite phase Pr0.92_{0.92}Ca0.08_{0.08}NiO3_{3}, using CaH2_2 as the reducing agent. We unveil a brownmillerite-like ordering pattern of the vacancies by high-resolution scanning transmission electron microscopy, with Ni ions in alternating square-pyramidal and octahedral coordination along the pseudocubic [100] direction. Furthermore, we find that the crystal structure acquires a high level of internal strain, where wavelike modulations of polyhedral tilts and rotations accommodate the large distortions around the vacancy sites. Our results suggest that atomic-resolution electron microscopy is a powerful method to locally resolve unconventional crystal structures that result from the topotactic transformation of complex oxide materials.

Keywords

Cite

@article{arxiv.2306.02809,
  title  = {Topotactically induced oxygen vacancy order in nickelate single crystals},
  author = {Yu-Mi Wu and Pascal Puphal and Hangoo Lee and Jürgen Nuss and Masahiko Isobe and Bernhard Keimer and Matthias Hepting and Y. Eren Suyolcu and Peter A. van Aken},
  journal= {arXiv preprint arXiv:2306.02809},
  year   = {2023}
}

Comments

9 pages, 4 figures

R2 v1 2026-06-28T10:56:30.377Z