English

Ferroelectricity in $\mathrm{HfO_2}$ from a chemical perspective

Materials Science 2024-09-17 v1

Abstract

Ferroelectricity observed in thin film HfO2\mathrm{HfO_2}, either doped with Si, Al, etc. or in the Hf0.5Zr0.5O2\mathrm{Hf_{0.5}Zr_{0.5}O_2} form, has gained great technical significance. However, the soft mode theory faces a difficulty in explaining the origin of such ferroelectricity. In this work, we propose that the 7 cation coordination number of HfO2/ZrO2\mathrm{HfO_2/ZrO_2} lies at the heart of this ferroelectricity, which stems from the proper ionic radii of Hf/Zr compared with O. Among the numerous compounds with non-centrosymmetric nature, e.g., mm2mm2 point group, HfO2\mathrm{HfO_2} and ZrO2\mathrm{ZrO_2} are special in that they are close to the border of 7 and 8 cation coordination, such that the 8-coordination tetragonal intermediate phase could greatly reduce the switching barrier. Other 7-coordination candidates, including SrI2\mathrm{SrI_2}, TaON, YSBr and YOF are also studied in comparison to HfO2\mathrm{HfO_2}/ZrO2\mathrm{ZrO_2}, and six switching paths are analyzed in detail for the Pca21Pca2_1 phase. A rule of preferred switching path in terms of ionic radii ratio and coordination number has been established. We also show the possible route from ferroelectric Pca21Pca2_1 phase to monoclinic P21/cP2_1/c phase in HfO2\mathrm{HfO_2}, which is relevant to the fatigue phenomenon.

Keywords

Cite

@article{arxiv.2201.00210,
  title  = {Ferroelectricity in $\mathrm{HfO_2}$ from a chemical perspective},
  author = {Jun-Hui Yuan and Ge-Qi Mao and Kan-Hao Xue and Na Bai and Chengxu Wang and Yan Cheng and Hangbing Lyu and Huajun Sun and Xingsheng Wang and Xiangshui Miao},
  journal= {arXiv preprint arXiv:2201.00210},
  year   = {2024}
}

Comments

14 pages, 4 figures

R2 v1 2026-06-24T08:37:35.707Z