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Enhancing energy storage performance in BaTiO3 ceramics via Mg and La co-doping strategy.

Authors :
Alkathy, Mahmoud S.
Gatasheh, Mansour K.
Zabotto, Fabio L.
Kassim, H. A.
Raju, K. C. James
Eiras, Jose A.
Source :
Journal of Materials Science: Materials in Electronics; May2024, Vol. 35 Issue 15, p1-11, 11p
Publication Year :
2024

Abstract

This work employs the conventional solid-state reaction method to synthesize Ba<subscript>0.92</subscript>La<subscript>0.08</subscript>Ti<subscript>0.95</subscript>Mg<subscript>0.05</subscript>O<subscript>3</subscript> (BLMT5) ceramics. The goal is to investigate how defect dipoles affect the ability of lead-free ferroelectric ceramics made from BaTiO<subscript>3</subscript> to store energy. An extensive examination was performed on the crystal structure, dielectric properties, and energy storage capacity. The analysis found that the polarization hysteresis loops of BLMT5 ceramics had a significant maximum P<subscript>m</subscript> of around 30 µC/cm<superscript>3</superscript> and a low remanent polarization P<subscript>r</subscript> of around 1.80 µC/cm<superscript>3</superscript>. In an electric field of 147 kV/cm, defect dipoles significantly increased the recovered energy density, reaching about 1.55 J/cm<superscript>3</superscript>. This also increased energy efficiency by over 91%. Furthermore, the BLMT demonstrates exceptional suitability for thermal stability since its performance remained unaffected at the temperatures under examination. The findings of this research indicate that these materials have great potential as suitable contenders for high-power energy storage applications. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09574522
Volume :
35
Issue :
15
Database :
Complementary Index
Journal :
Journal of Materials Science: Materials in Electronics
Publication Type :
Academic Journal
Accession number :
177641797
Full Text :
https://doi.org/10.1007/s10854-024-12816-w