January 2025

Journal

An atomistic structural description of the ferrielectric polar phase involving non-coplanar cation displacements

By:
Pramanick, Titas; Sandar Htet, Cho; Manjon Sanz, Alicia M; Liu, Jue ; Ullah, S; Kong, Jing; Brézard oudot, A; Babori, C; Daniel, Laurent; Misture, Scott; Pramanick, Abhijit
Journal Name:
Scripta Materialia
Page Number:
116426
Volume:
256
Publication Date:
January 22, 2025
View DOI Listing:
https://doi.org/10.1016/j.scriptamat.2024.116426

Abstract

Materials with antipolar-polar transformation are attractive for their large functional responses. However, the antipolar state remains controversial in many materials. For example, recent studies on archetypical antiferroelectric (AFE) materials indicate an incomplete compensation of antiparallel dipoles, which prompted their alternative definition as ferrielectric. Here, we investigated the origin of the ferrielectric (FIE) state in a classical AFE material using X-ray and neutron total scattering. We show that the FIE state arises from 3-dimensional modulation of the cation-centric electric dipoles, which can be viewed as periodic arrangement of 180° twin boundaries with non-Ising characteristics.