High-entropy engineering via B-site multicomponent substitution in BF-BT ceramics produces 10.55 J/cm³ recoverable energy density and 840 kV/cm breakdown strength through lattice distortion, relaxor behavior, and grain refinement.
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Entropy engineering of BF-BT-based high-entropy ceramics for ultra-high energy storage performance
High-entropy engineering via B-site multicomponent substitution in BF-BT ceramics produces 10.55 J/cm³ recoverable energy density and 840 kV/cm breakdown strength through lattice distortion, relaxor behavior, and grain refinement.