Improved energy storage performance of BST‒BNT ceramics via composition modification
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Condensed Matter Physics,General Chemistry
Reference63 articles.
1. Ultra-high energy storage performance in lead-free multilayer ceramic capacitors via a multiscale optimization strategy
2. Structure and electrical properties of lead-free Bi0.5Na0.5TiO3-based ceramics for energy-storage applications
3. Tunable equivalent dielectric constant and superior energy storage stability in relaxor-like antiferroelectric PLZT ceramic
4. Recent advances in lead-free dielectric materials for energy storage
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1. Improved dielectric temperature stability and energy storage properties of BNT-BKT-based lead-free ceramics;Ceramics International;2024-02
2. Enhanced energy storage performance of (Bi0.5Na0.5)TiO3–SrTiO3 ceramics doped with ZrO2;Current Applied Physics;2024-01
3. Energy‐storage properties of (0.7Bi0.65Na0.35Fe0.3Ti0.7O3–0.3Sr0.85Bi0.1TiO3)–NaTaO3 relaxor under low electric fields;International Journal of Applied Ceramic Technology;2023-12-11
4. The study on the increase of relaxation and energy storage properties of (Na0.5Bi0.5)0.935Sr0.065TiO3 ferroelectric ceramic doped with Na0.7Bi0.08La0.02NbO3;Journal of Materials Science: Materials in Electronics;2023-11-29
5. Understanding Crystal Spatial Symmetry of Sm/Mg Heterovalent‐Doped BST–BNT Ceramics: An Effect Mechanism for Electrical Properties;physica status solidi (a);2023-09-27
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