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Enhanced Energy Storage Properties of Highly Polarized BMT-Based Thin Films through the Multiscale Structure Synergistic Regulation Strategy

Authors :
Tao, Cheng
Li, Xinhui
Huang, Rui
Hao, Hua
Yao, Zhonghua
Liu, Hanxing
Cao, Minghe
Source :
ACS Applied Materials & Interfaces; September 2024, Vol. 16 Issue: 36 p47797-47807, 11p
Publication Year :
2024

Abstract

For solving the trade-off relationship of the polarization and breakdown electric field, ferroelectric films with high polarization are playing a critical role in energy storage capacitor applications, especially at moderate/low electric fields. In this work, we propose a multiscale structure (including defect, domain, and grain structures) synergetic optimization strategy to optimize the polarization behavior and energy storage performances of BiMg0.5Ti0.5O3(BMT) ferroelectric films by introducing Sr0.7La0.2TiO3(SLT) without compromising the breakdown strength. At a moderate electric field of 2917 kV/cm, a high discharge density of 72.2 J/cm3has been achieved in 0.9BMT-0.1SLT films, together with good frequency, thermal, and cycle stabilities for energy storage. Importantly, the phase difference Δφ is utilized to quantitatively evaluate the polarization switching mobility of the ferroelectric domain/PNRs at an external electric field stimulation. This research demonstrates that a multiscale structure optimization strategy could effectively regulate the energy storage performance, and ecofriendly BMT-based materials are promising candidates for next-generation energy storage capacitors, especially at moderate/low electric fields.

Details

Language :
English
ISSN :
19448244
Volume :
16
Issue :
36
Database :
Supplemental Index
Journal :
ACS Applied Materials & Interfaces
Publication Type :
Periodical
Accession number :
ejs67246461
Full Text :
https://doi.org/10.1021/acsami.4c02696