论文标题
钙钛矿氧化物中八面体旋转失真诱导的二维铁电性
Two-dimensional ferroelectricity induced by octahedral rotation distortion in perovskite oxides
论文作者
论文摘要
自从范德华材料的单层发现以来,二维(2D)铁电性引起了广泛的关注。在这里,我们表明,八面体旋转失真引起的2D铁电性通过第一原理计算在钙钛矿双层系统中广泛存在。钙钛矿公差因子在钙钛矿单层和双层的晶格动力学和地面结构中起着至关重要的作用,因此为筛选这种混合不当铁电性提供了重要的指标。通常,通过原骨双胞胎状态的铁电交换的能量屏障最低。外延应变可以通过改变八面体旋转和倾斜失真的幅度有效调整铁电偏振和铁电交换。增加的压缩应变通过抑制倾斜失真会导致极性到非极相变。在与底物界面处八面体扭曲的合作效应可以减少逆转旋转模式的能量屏障,甚至可以改变最低能量的铁电开关路径。
Two-dimensional (2D) ferroelectricity has attracted extensive attention since its discovery in the monolayers of van der Waals materials. Here we show that 2D ferroelectricity induced by octahedral rotation distortion is widely present in the perovskite bilayer system through first-principles calculations. The perovskite tolerance factor plays a crucial role in the lattice dynamics and ground-state structure of the perovskite monolayers and bilayers, thus providing an important indicator for screening this hybrid improper ferroelectricity. Generally, the ferroelectric switching via an orthorhombic twin state has the lowest energy barrier. Epitaxial strain can effectively tune the ferroelectric polarization and ferroelectric switching by changing the amplitude of octahedral rotation and tilt distortion. The increasing compressive strain causes a polar to nonpolar phase transition by suppressing the tilt distortion. The cooperative effect of octahedral distortion at the interface with the substrate can reduce the energy barrier of the reversing rotation mode and can even change the lowest-energy ferroelectric switching path.