February 2024

Journal

Local structural mechanism for enhanced energy storage properties in heterovalent doped NaNbO3 ceramics

By:
Sandar Htet, Cho; Manjon Sanz, Alicia M; Liu, Jue ; Babori, Chaimae; Marlton, Frederick; Daniel, Laurent; Ry Vogel Jørgensen, Mads; Pramanick, Abhijit
Journal Name:
Journal of the European Ceramic Society
Page Number:
1597-1609
Volume:
44
Issue Number:
3
Publication Date:
February 2, 2024
View DOI Listing:
https://doi.org/10.1016/j.jeurceramsoc.2023.10.072

Abstract

In recent years, there is a growing interest for new lead-free oxides with reversible antiferroelectric (AFE)-ferroelectric (FE) phase transition for high-power energy-storage applications. NaNbO3-based ceramics are particularly attractive due to their easy synthesis and cost-effectiveness. In order to stabilize reversible AFE-FE phase transition, NaNbO3 is doped with a combination of heterovalent substitutions, although the underlying structural mechanism for the same is poorly understood. Here, we investigated local and average structures of Ca/Zr doped NaNbO3 using neutron total scattering. We show that Ca/Zr doping increases the average AFE phase (Pbma) fraction, however, the material remains as a composite of both FE (P21ma) and AFE regions. Analysis of local structure suggests that increase in the long-range AFE phase results from more extensive twinning of local FE regions, due to introduced charge disorder. We propose that enhanced energy-storage properties of Ca/Zr-doped NaNbO3 arises from localized twin boundary motion between the defect-induced pinning centers.