反铁电性
铁电性
锆酸盐
材料科学
相界
相变
凝聚态物理
偶极子
化学物理
相(物质)
格子(音乐)
光电子学
化学
电介质
物理
陶瓷
声学
复合材料
有机化学
钛酸酯
作者
Rujian Jiang,Yi Cao,Wan‐Rong Geng,Mei-Xiong Zhu,Yun‐Long Tang,Yin‐Lian Zhu,Yujia Wang,Feng-Hui Gong,Suzhen Liu,Yuting Chen,Jiaqi Liu,Nan Liu,Jinghui Wang,Xiaodong Lv,Shuang-Jie Chen,Xiuliang Ma
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-02-01
卷期号:23 (4): 1522-1529
被引量:18
标识
DOI:10.1021/acs.nanolett.2c04972
摘要
Antiferroelectrics characterized by voltage-driven reversible transitions between antiparallel and parallel polarity are promising for cutting-edge electronic and electrical power applications. Wide-ranging explorations revealing the macroscopic performances and microstructural characteristics of typical antiferroelectric systems have been conducted. However, the underlying mechanism has not yet been fully unraveled, which depends largely on the atomistic processes. Herein, based on atomic-resolution transmission electron microscopy, the deterministic phase transition pathway along with the underlying lattice-by-lattice details in lead zirconate thin films was elucidated. Specifically, we identified a new type of ferrielectric-like dipole configuration with both angular and amplitude modulations, which plays the role of a precursor for a subsequent antiferroelectric to ferroelectric transformation. With the participation of the ferrielectric-like phase, the phase transition pathways driven by the phase boundary have been revealed. We provide new insights into the consecutive phase transformation in low-dimensional lead zirconate, which thus would promote potential antiferroelectric-based multifunctional devices.
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