November 2023

Journal

Compression mechanisms of ferroelectric PbTiO3 via high pressure neutron scattering

By:
Frantti, Johannes; Fujioka, Y; Molaison, Jamie J; Boehler, Reinhard ; Haberl, Bianca ; Tulk, Christopher A; Moreira dos Santos, Antonio F
Journal Name:
Journal of Physics: Condensed Matter
Page Number:
435702
Volume:
30
Issue Number:
43
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1088/1361-648X/aae342

Abstract

Switchable atomic displacements generate electric dipole moments in ferroelectric materials utilized in many contemporary devices. Lead titanate, a perovskite oxide with formula PbTiO3, has been referred to as a textbook example of a prototype displacive ferroelectric and is a testing platform of widely used models of piezoelectric response of complex solid-solutions. PbTiO3 has been addressed by experimental and computational studies, often with apparently conflicting conclusions. To date, hydrostatic pressure experiments have been interpreted in terms of a model in which the dipole moments gradually diminish with increasing pressure until a transition to a cubic phase, characterized by a zero average dipole moment, occurs. The model unrealistically assumes an even compression of the crystal. Here we show by high-pressure neutron powder diffraction measurements that a fast and slow shrinkage of 12-oxygen cages around Pb and octahedra around Ti, respectively, takes place. A phase diagram consolidating earlier and present results is given.