JOURNAL ARTICLE

Flexible antiferroelectric thick film deposited on nickel foils for high energy‐storage capacitor

Guoqiang LuoYong LiXihong HaoHaitao JiangJiwei Zhai

Year: 2019 Journal:   Journal of the American Ceramic Society Vol: 102 (10)Pages: 6107-6114   Publisher: Wiley

Abstract

Abstract Flexible antiferroelectric ( AFE ) Pb 0.94 La 0.04 Zr 0.97 Ti 0.03 O 3 (PLZT) thick‐film capacitors were fabricated on nickel foil substrates using sol‐gel method. The thick PLZT film shows pure perovskite phase with dense microstructure. The discharge energy‐storage properties of the thick PLZT film are directly evaluated by the resistance‐inductance‐capacitance ( RLC ) circuit. The maximum value of the discharge energy‐storage density ( W dis ) is 15.8 J/cm 3 at 1400 kV/cm and 90% of the corresponding energy is released in a short time of about 250 ns. In addition, the W dis and discharge time could be adjusted by the bent radius of the film, which provides a simple and feasible solution for the regulation of the electrical performance. Furthermore, the flexible AFE film exhibits good mechanical properties under cycling tests with bending radii down to 2.5 mm and 1500 rounds. This work shows a critical significance in fabricating flexible AFE capacitors for application in modern electronics and electrical power systems.

Keywords:
Materials science Capacitor Capacitance Energy storage FOIL method Antiferroelectricity Composite material Film capacitor Nickel Optoelectronics Electrical engineering Metallurgy Dielectric Ferroelectricity Voltage Electrode Power (physics)

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Citation History

Topics

Ferroelectric and Piezoelectric Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Dielectric materials and actuators
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering
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