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Ultra-high energy-storage density and fast discharge speed of (Pb0.98−xLa0.02Srx)(Zr0.9Sn0.1)0.995O3 antiferroelectric ceramics prepared via the tape-casting method

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Abstract

Inspired by the increasing demand for high energy-storage capacitors in electronic and electrical systems, the development of dielectrics with high energy-storage performance has attracted much attention recently. Here, a record-high recoverable energy-storage density of 11.18 J cm−3 and a high energy efficiency of 82.2% are realized in (Pb0.98–xLa0.02Srx)(Zr0.9Sn0.1)0.995O3 (PLSZS) antiferroelectric ceramics prepared using the tape-casting method. Sr2+-doping and the tape-casting method give rise to a colossal increase in breakdown strength and switching of the electric field between the antiferroelectric and ferroelectric phase, which are responsible for the excellent energy-storage properties. Furthermore, with respect to the discharge performance, the antiferroelectric PLSZS ceramics exhibit a high discharge energy density of 8.6 J cm−3, and fast discharge speed where 90% of the stored energy could be released in 185 ns. This study opens up a promising and feasible route for designing high energy-storage materials via an appropriate element doping and fabricating method, and more importantly, gives PLSZS antiferroelectric ceramics an unexpected role with potential for application in high-power pulsed capacitors.

Graphical abstract: Ultra-high energy-storage density and fast discharge speed of (Pb0.98−xLa0.02Srx)(Zr0.9Sn0.1)0.995O3 antiferroelectric ceramics prepared via the tape-casting method

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Publication details

The article was received on 26 Feb 2019, accepted on 08 Apr 2019 and first published on 08 Apr 2019


Article type: Paper
DOI: 10.1039/C9TA02149C
Citation: J. Mater. Chem. A, 2019, Advance Article

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    Ultra-high energy-storage density and fast discharge speed of (Pb0.98−xLa0.02Srx)(Zr0.9Sn0.1)0.995O3 antiferroelectric ceramics prepared via the tape-casting method

    X. Liu, Y. Li and X. Hao, J. Mater. Chem. A, 2019, Advance Article , DOI: 10.1039/C9TA02149C

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