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◆ Materials horizons2026-09-08

Domain wall formation and migration in ferroelectric hafnium oxide.

Kang Wang, Huanhuan Tian, Menglin Huang, Shuqi Tang, Jianguo Yang, Shiyou Chen

原始摘要(英文原文)· Original abstract
Orthorhombic hafnium oxide (HfO2) is predicted to exhibit multiple domain walls (DWs): the pbca-like DW with the lowest energy but hindered migration, and higher-energy pbcn-like and t-like DWs. However, which of these DWs most readily appears during polarization switching has yet to be determined. We adopt machine-learning interatomic-potentials and molecular dynamics simulations to investigate the dynamic processes of ferroelectric HfO2 under an electric field. The simulation shows that a local electric field above 5 MV cm-1 within a domain can induce local polarization switching, forming the t-like DW. This DW exhibits facile migration, requiring a critical field of only 1.2 MV cm-1. The pbca-like DW emerges only when the applied electric field exceeds 6 MV cm-1. The pbcn-like DW is not identified, although its energy is comparable to that of t-like DW. During a migration cycle of the t-like DW, an intermediate state resembling the pbcn-like DW appears, but this intermediate state cannot be stably maintained. Room-temperature phonon calculations show that the pbcn-like DW possesses an imaginary frequency mode, preventing stabilization, while the t-like DW is dynamically stable. This work sheds light on the room-temperature instability of the pbcn-like DW and highlights the crucial role of the mobile t-like DW in polarization switching of HfO2.
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Domain wall formation and migration in ferroelectric hafnium oxide. — 科研速览 Science Skim