铁电性
磁性
材料科学
极化(电化学)
光电效应
凝聚态物理
带隙
吸收(声学)
磁电效应
多铁性
光电子学
电介质
化学
物理
物理化学
复合材料
作者
Meifeng Liu,Yang Zhang,Ling-Fang Lin,Lin Lin,Shengwei Yang,Xiang Li,Yu Wang,Shaozhen Li,Z. B. Yan,Xiuzhang Wang,Xiaoguang Li,Shuai Dong,Jun‐Ming Liu
摘要
Layered perovskites A3M2O7 are known to exhibit the so-called hybrid improper ferroelectricity. Despite experimentally confirmed cases (e.g., nonmagnetic M = Ti and Sn), the ferroelectricity in magnetic Ca3Mn2O7 remains a puzzle. Here, the structural, ferroelectric, magnetoelectric, and optical properties of Ca3Mn2O7 are systematically investigated. Switchable polarization is directly measured, demonstrating its ferroelectricity. In addition, magnetoelectric response is also evidenced, implying the coupling between magnetism and ferroelectricity. Furthermore, strong visible light absorption is observed, which can be understood from its electronic structure. Its direct and appropriate bandgap, as well as wide conducting bands, makes Ca3Mn2O7 a potential candidate for ferroelectric photoelectric applications.
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