English

Sub-unit cell engineering of CrVO$_3$ superlattice thin films

Materials Science 2026-02-17 v1

Abstract

Ordered corundum oxides introduce new prospects in the field of functional oxides thin films, complementing the more widely studied class of ABO3_3 perovskites. In this work, we take advantage of the layer-by-layer growth regime to fabricate epitaxial CrVO3_3 superlattice thin films with atomic-scale accuracy on the periodic arrangement of Cr and V layers. By means of X-ray diffraction, scanning transmission electron microscopy and Raman spectroscopy, we confirm the thickness control in the sub-unit cell scale, alternating 3, 2 or 1 single atomic layers of Cr2_2O3_3 and V2_2O3_3. For the first time, we stabilize the ilmenite phase of CrVO3_3 (space group R-3) and compare the functional properties of the thin film with those calculated by density functional theory. This novel approach to the growth of ordered corundum oxides opens the path towards the stabilization of new complex oxides with tailored properties by varying the composition and the superlattice period, ultimately broadening the family of functional rhombohedral oxides.

Keywords

Cite

@article{arxiv.2510.17606,
  title  = {Sub-unit cell engineering of CrVO$_3$ superlattice thin films},
  author = {Claudio Bellani and Simon Mellaerts and Wei-Fan Hsu and Koen Schouteden and Alberto Binetti and Arno Annys and Zezhong Zhang and Nicolas Gauquelin and Johan Verbeeck and Jesús López-Sánchez and Adolfo del Campo and Soon-Gil Jung and Tuson Park and Michel Houssa and Jean-Pierre Locquet and Jin Won Seo},
  journal= {arXiv preprint arXiv:2510.17606},
  year   = {2026}
}

Comments

This manuscript is currently under review at Communications Materials