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Achieving high discharge energy density and efficiency with NBT-based ceramics for application in capacitors

Journal of Materials Chemistry C · 2019 · Vol. 7(14) · pp. 4072–4078
Zhongbin PanDi HuYang ZhangJinjun LiuBo ShenJiwei Zhai

Abstract

The 0.94(BNT–BST)–0.06KNN ceramic possesses an excellent stored energy storage density (<italic>W</italic><sub>s</sub> = ∼3.13 J cm<sup>−3</sup>), a recoverable energy storage density (<italic>W</italic><sub>r</sub> = ∼2.65 J cm<sup>−3</sup>), and maintains a relatively high efficiency (<italic>η</italic> ∼ 84.6%).

Ferroelectric and Piezoelectric MaterialsDielectric materials and actuatorsSemiconductor materials and devicesMaterials scienceCeramicEnergy densityEnergy storageCapacitorEngineering physicsPhysicsElectrical engineeringThermodynamicsComposite material

Funding

  • Ministry of Science and Technology of the People's Republic of China
  • Ningbo University
Citations
378
FWCI
20.01
field-weighted impact
References
61
Percentile
100%
vs. same field & year
Citations per year
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