Chemical control of polymorphism and ferroelectricity in PbTiO3 and SrTiO3 monolayers and bilayers
arXiv:2508.18777 · doi:10.1039/D5CP02476E
Abstract
Layers of perovskites, found in 3D materials, 2D heterostructures, and nanotubes, often distort from high symmetry to facilitate dipole polarisation that is exploitable in many applications. Using density-functional theory calculations, ferroelectricity in bilayers of the 2D materials PbTiO3 and SrTiO3 is shown to be controlled by bond breakage and formation processes that act as binary switches. These stacking-dependent processes turn on and off as a function of relaxation from high-symmetry structures and the application of biaxial strain, and their concerted rearrangements lead to low energy barriers for ferroelectric polarisation switching. Structures with symmetry intermediate between high-symmetry octahedral forms and low-symmetry ferroelectric forms are identified, allowing the intrinsic processes associated with traditional "ferrodistortive" and "antiferrodistortive" distortions of TiO6 octahedra to be identified. Ferrodistortive-mode activity is shown to be generated by the simultaneous application of two different types of curvilinear antiferrodistortive motions. In this way, four angular variabes control polarisation switching through the concerted making and breaking of chemical bonds. These subltities make the polarisation sensitive to chemical-environment and temperature effects that manipulate strain and structure, features exploitable in futuristic devices.
References in corpus (11)
- The interface between silicon and a high-k oxide
- Accurate prediction of the properties of materials using the CAM-B3LYP Density Functional
- Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
- Extrinsic and Intrinsic Charge Trapping at the Graphene/Ferroelectric Interface
- Tunable superconductivity at the oxide-insulator/KTaO interface and its origin
- Two-dimensional ferroelectrics from high throughput computational screening
- Impact of Cation Stoichiometry on the Crystalline Structure and Superconductivity in Nickelates
- Density functionals with asymptotic-potential corrections are required for the simulation of spectroscopic properties of materials
- preparation of superconducting infinite-layer nickelate thin films with atomically flat surface
- Predicting the Structural, Electronic and Magnetic Properties of Few Atomic-layer Polar Perovskite
- A new look at the temperature-dependent properties of the antiferroelectric model PbZrO3: an effective Hamiltonian study