Abstract
The (Bi 0.2Na 0.2K 0.2La 0.2Sr 0.2)(Ti 1-xSc x)O 3 (BNKLST-xSc) high entropy ceramics (HECs) have been successfully synthesized via a citrate acid method. The effects of Sc-doping on the lattice structure, microstructural morphology, dielectric and energy-storage properties of HECs are comprehensively investigated. The results indicate that although Sc 3+ doped at B-site does not alternate the perovskite structure of BNKLST with a single phase, it results in lattice expansion and weakened bonding in TiO 6 octahedron. The dielectric constant of BNKLST-xSc is reduced while the dielectric relaxation is enhanced with increasing Sc content x, due to the enhanced structural inhomogeneity in nano-regions. In addition, the lattice structure of BNKLST-0.2Sc exhibits ultra-high thermal stability at 30–300 °C, which achieves the maximum energy storage density of 1.094 J/cm 3 with an outstanding efficiency better than 80%, accompanying by the mechanical and dielectric losses as low as ~ 10 –3. It is suggested that BNKLST-0.2Sc could be promising dielectric materials in capacitors and energy-storage devices with an excellent combination of ultrahigh power density, high energy density, thermal stability as well as low mechanical and dielectric losses.
Original language | English |
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Pages (from-to) | 53-62 |
Number of pages | 10 |
Journal | Journal of Electroceramics |
Volume | 49 |
Issue number | 2 |
DOIs | |
Publication status | Published - Oct 2022 |
Keywords
- Dielectric capacitors
- Dielectric energy storage
- Dielectric properties
- High-entropy ceramics
ASJC Scopus subject areas
- Electronic, Optical and Magnetic Materials
- Condensed Matter Physics
- Mechanics of Materials
- Ceramics and Composites
- Materials Chemistry
- Electrical and Electronic Engineering