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◆ Science2026-01-22· Ferroelectricity

Observation of one-dimensional, charged domain walls in ferroelectric ZrO <sub>2</sub>

Hai Zhong, Shiyu Wang, Qinghua Zhang, Zhuohui Liu, Donggang Xie, Qi Li, Shifeng Jin, Shufang Zhang, Er‐Jia Guo, Meng He, Can Wang, Lin Gu, Gz Yang, Jin Kui-Juan, Chen Ge

原始摘要(英文原文)· Original abstract
Ferroelectric charged domain walls (CDWs) with nanoscale thickness and bound charges are typically viewed as ultrathin, reconfigurable, and highly conductive two-dimensional components for domain wall nanoelectronics. Dimensional confinement of such polar topological structures has the potential to increase device density and unlock novel functionalities. We report 180° head-to-head and tail-to-tail CDWs exhibiting one-dimensional (1D) characteristics. These 1D CDWs are confined within the polar layers of ferroelectric ZrO 2 and have atomic-scale dimensions in both width and thickness. Quantitative analysis unveils a distinct screening mechanism of these walls whereby bound polarization charges are compensated by self-balancing oxygen occupancy. We demonstrate electric field–driven manipulation of these 1D CDWs, revealing the microscopic coupling between polarization switching and oxygen-ion transport.
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Observation of one-dimensional, charged domain walls in ferroelectric ZrO <sub>2</sub> — 科研速览 Science Skim