X-Ray Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.
Phys Rev Lett. 2011 Jun 10;106(23):235502. doi: 10.1103/PhysRevLett.106.235502.
Using first-principles density functional theory calculations, we discover an anomalously large biaxial strain-induced octahedral rotation axis reorientation in orthorhombic perovskites with tendency towards rhombohedral symmetry. The transition between crystallographically equivalent (isosymmetric) structures with different octahedral rotation magnitudes originates from strong strain-octahedral rotation coupling available to perovskites and the energetic hierarchy among competing octahedral tilt patterns. By elucidating these criteria, we suggest many functional perovskites would exhibit the transition in thin film form, thus offering a new landscape in which to tailor highly anisotropic electronic responses.
我们运用第一性原理密度泛函理论计算发现,在具有三方对称性趋势的正交钙钛矿中存在各向异性的大双轴应变诱导的八面体旋转轴重取向。具有不同八面体旋转幅度的晶体学等效(等对称)结构之间的转变源于钙钛矿中存在强应变-八面体旋转耦合以及竞争八面体倾斜模式之间的能量层次关系。通过阐明这些准则,我们认为许多功能钙钛矿在薄膜形式下会表现出这种转变,从而为定制具有各向异性电子响应的材料提供了一个新的途径。