Back to Search Start Over

A Roadmap for Ferroelectric–Antiferroelectric Phase Transition

Authors :
Jiang, Ru-Jian
Tang, Yun-Long
Liu, Su-Zhen
Zhu, Mei-Xiong
Li, Changji
Feng, Yan-Peng
Gong, Feng-Hui
Wang, Jing-Hui
Lv, Xiao-Dong
Chen, Shuang-Jie
Wang, Yu-Jia
Zhu, Yin-Lian
Ma, Xiu-Liang
Source :
Nano Letters; September 2024, Vol. 24 Issue: 37 p11714-11721, 8p
Publication Year :
2024

Abstract

Antiferroelectric materials have shown great potential in electronic devices benefiting from the reversible phase transition between ferroelectric and antiferroelectric phases. Understanding the dipole arrangements and clear phase transition pathways is crucial for design of antiferroelectric materials-based energy storage and conversion devices. However, the specific phase transition details remain largely unclear and even controversial to date. Here, we have grown a series of PbZrO3on SrTiO3substrates and elucidated the fine atom structures and phase transition pathways using atomic-resolution transmission electron microscopy. Specifically, a roadmap for ferroelectric to antiferroelectric phase transitions, here with increasing film thickness, is determined as ferroelectric rhombohedral (R3c)–ferroelectric monoclinic (Pc)–ferrielectric orthorhombic (Ima2)–antiferroelectric orthorhombic (Pbam), where Pcand Ima2 phases act as structural bridges. Moreover, the phase transition pathway is strongly related to the synergistic effect of oxygen octahedral tilting and cation displacement. These findings provide an insightful understanding for the theories and related properties of antiferroelectrics.

Details

Language :
English
ISSN :
15306984 and 15306992
Volume :
24
Issue :
37
Database :
Supplemental Index
Journal :
Nano Letters
Publication Type :
Periodical
Accession number :
ejs67333539
Full Text :
https://doi.org/10.1021/acs.nanolett.4c03382