English

Guidelines for the optimization of hafnia-based ferroelectrics through superlattice engineering

Materials Science 2026-04-15 v1

Abstract

Hafnia-based ferroelectrics are revolutionizing the data storage industry and the field of ferroelectrics, with improved materials and devices being reported monthly. However, full understanding and control has not been reached yet and the ideal material still needs to be found. Here we report ferroelectric hafnia-zirconia superlattices made out of zirconium-substituted hafnia (Hf1x_{1-x}Zrx_xO2_2) sublayers of varying stoichiometries alternating with pure ZrO2_2 sublayers. It is observed that the ZrO2_2 layers in these superlattices act as a booster for the total remnant polarization (Pr_r). By combining the benefits of the ZrO2_2 layers and the added interfaces, which help prevent breakdown, we fabricate superlattices with a total 87.5% ZrO2_2 content, exhibiting record polarizations with a 2Pr_r value of 84 μ\muC/cm2^2 that can be cycled 109^9 times, while maintaining a 2Pr_r > 20 μ\muC/cm2^2. Next to these attractive properties, substitution of HfO2_2 by the much more abundant ZrO2_2 offers a significant step towards the sustainable application of these devices.

Keywords

Cite

@article{arxiv.2507.05174,
  title  = {Guidelines for the optimization of hafnia-based ferroelectrics through superlattice engineering},
  author = {Johanna van Gent and Binayak Mukherjee and Ewout van der Veer and Ellen M. Kiens and Gertjan G. Koster and Bart J. Kooi and Jorge Íñiguez-González and Beatriz Noheda},
  journal= {arXiv preprint arXiv:2507.05174},
  year   = {2026}
}