铁电性
材料科学
透射电子显微镜
极地的
相变
相(物质)
电场
扫描透射电子显微镜
薄膜
凝聚态物理
多铁性
电压
光电子学
纳米技术
化学
物理
电介质
有机化学
量子力学
天文
作者
Yan Cheng,Zhaomeng Gao,Kun Hee Ye,Hyeon Woo Park,Yonghui Zheng,Yunzhe Zheng,Jianfeng Gao,Min Hyuk Park,Jung‐Hae Choi,Kan‐Hao Xue,Cheol Seong Hwang,Hangbing Lyu
标识
DOI:10.1038/s41467-022-28236-5
摘要
Atomic-resolution Cs-corrected scanning transmission electron microscopy revealed local shifting of two oxygen positions (OI and OII) within the unit cells of a ferroelectric (Hf0.5Zr0.5)O2 thin film. A reversible transition between the polar Pbc21 and antipolar Pbca phases, where the crystal structures of the 180° domain wall of the Pbc21 phase and the unit cell structure of the Pbca phase were identical, was induced by applying appropriate cycling voltages. The critical field strength that determined whether the film would be woken up or fatigued was ~0.8 MV/cm, above or below which wake-up or fatigue was observed, respectively. Repeated cycling with sufficiently high voltages led to development of the interfacial nonpolar P42/nmc phase, which induced fatigue through the depolarizing field effect. The fatigued film could be rejuvenated by applying a slightly higher voltage, indicating that these transitions were reversible. These mechanisms are radically different from those of conventional ferroelectrics.
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