Optimized Energy Storage Performances by Viscous Polymer Process in High-Entropy Relaxor Ferroelectric Ceramics

38 Pages Posted: 19 Aug 2024

See all articles by Minquan Wang

Minquan Wang

Shaanxi University of Science and Technology

Ying Lin

Shaanxi University of Science and Technology

Binglong Zheng

Shaanxi University of Science and Technology

Qibin Yuan

Shaanxi University of Science and Technology

Haibo Yang

Shaanxi University of Science and Technology

Abstract

Dielectric capacitors play an irreplaceable role in complex and integrated electronic systems. However, attaining ultrahigh recoverable energy storage density (Wrec) alongside energy storage efficiency (η) poses a formidable challenge, impeding the advance towards the miniaturization and integration of cutting-edge energy storage devices. In this work, a high-entropy strategy with a viscous polymer process is adopted, bringing about ultrafine grains and ultrasmall polar nanoregions (PNRs) accompanied by enhanced electrical homogeneity and polarization relaxation characteristics. As a result, an ultrahigh Wrec ~7.51 J/cm3 is achieved in a high-entropy KNN-based energy storage ceramic with a high η ~88.4% at 750 kV/cm. Moreover, the ceramic capacitor exhibits a colossal power density reaching approximately 420 MW/cm3 and a discharge energy density of approximately 4.85 J/cm3 at 160 ℃. Impressively, it maintains low variation rates of less than 4% across a broad temperature range from 20 ℃ to 160 ℃. The new approach opens avenues for the design and development of superior dielectric materials used in next-generation high-power pulse devices.

Keywords: K0.5Na0.5NbO3-based ceramics, Energy storage performances, High entropy strategy, Viscous polymer process

Suggested Citation

Wang, Minquan and Lin, Ying and Zheng, Binglong and Yuan, Qibin and Yang, Haibo, Optimized Energy Storage Performances by Viscous Polymer Process in High-Entropy Relaxor Ferroelectric Ceramics. Available at SSRN: https://ssrn.com/abstract=4930399

Minquan Wang

Shaanxi University of Science and Technology ( email )

Xi’an, 710021
China

Ying Lin

Shaanxi University of Science and Technology ( email )

Binglong Zheng

Shaanxi University of Science and Technology ( email )

Xi’an, 710021
China

Qibin Yuan

Shaanxi University of Science and Technology ( email )

Haibo Yang (Contact Author)

Shaanxi University of Science and Technology ( email )

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