Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7898387 | Journal of the European Ceramic Society | 2018 | 34 Pages |
Abstract
(1-x)NBT-xBSN (0.1â¯â¤â¯xâ¯â¤â¯0.35) ceramics were prepared by solid state methods and their energy storage properties and high-temperature capacitor applications were systematically investigated. All samples showed a perovskite structure and the structure transformed to lower symmetry orthorhombic phase (xâ¯â¥â¯0.1) from rhombohedral phase (xâ¯<â¯0.1) to with the addition of BSN. The more addition content of BSN significantly decreases phase transition temperature Tm of NBT ceramics. The xâ¯=â¯0.25 sample exhibits a stable relative permittivity of 1605â¯Â±â¯15% in a broad temperature range of 38â¯Â°C to 319â¯Â°C. With increasing BSN concentration, the slope of the P-E loops and the energy loss gradually decreases. When xâ¯=â¯0.25, a high breakdown strength of 190â¯kV/cm and the maximum discharge energy density of 1.91â¯J/cm3 were obtained, of which the energy efficiency was as high as 86.4%. Thus, it was believed that our work could provide a significant guidance for designing the new system for energy storage.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Lei Zhang, Xinyang Pu, Min Chen, Shuaishuai Bai, Yongping Pu,