铁电性
多铁性
凝聚态物理
极化(电化学)
材料科学
极化密度
核磁共振
电介质
物理
磁场
磁化
光电子学
化学
量子力学
物理化学
作者
Ang Tao,Yixiao Jiang,Shanshan Chen,Yuqiao Zhang,Yi Cao,Tingting Yao,Chunlin Chen,Hengqiang Ye,Xiuliang Ma
标识
DOI:10.1038/s41467-024-50431-9
摘要
Domain walls affect significantly ferroelectric and magnetic properties of magnetoelectric multiferroics. The stereotype is that the ferroelectric polarization will reduce at the domain walls due to the incomplete shielding of depolarization field or the effects of gradient energy. By combining transmission electron microscopy and first-principles calculations, we demonstrate that the ferroelectric polarization of tail-to-tail 180° domain walls in ε-Fe2O3 is regulated by the bound charge density. A huge enhancement (43%) of ferroelectric polarization is observed in the type I domain wall with a low bound charge density, while the ferroelectric polarization is reduced to almost zero at the type II domain wall with a high bound charge density. The magnetic coupling across the type I and type II ferroelectric domain walls are antiferromagnetic and ferromagnetic, respectively. Revealing mechanisms for enhancing ferroelectric polarization and magnetic behaviors at ferroelectric domain walls may promote the fundamental research and potential applications of magnetoelectric multiferroics.
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