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- W3149683674 abstract "AgNbO3-based ceramics have been the spotlight for the lead-free dielectric capacitors due to its unique antiferroelectric feature and the ever-increasing environmental concerns. Herein, synergic modulation on the energy storage properties of AgNbO3-based ceramics was reported, in which the over-stoichiometrical introduction of only 0.10 wt% MnO2 at the atomic-scale leads to reduced leakage current, Pr and enhanced antiferroelectric stability while the SiO2 coating on the AgNbO3 particles at the micro-scale greatly inhibits the grain growth, increases the breakdown strength and the electric filed inducing the AFE-FE transitions. As a result, a large recoverable energy density up to 3.34 J/cm3 with efficiency of 60.0% was obtained in 0.10 wt% MnO2-doped AgNbO3@SiO2 ceramic, which is 2.3 times larger than that of the pristine AgNbO3. This work provides a rational approach to synergically modulate the energy storage properties." @default.
- W3149683674 created "2021-04-13" @default.
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- W3149683674 date "2021-07-01" @default.
- W3149683674 modified "2023-10-17" @default.
- W3149683674 title "Synergic modulation of over-stoichiometrical MnO2 and SiO2-coated particles on the energy storage properties of silver niobate-based ceramics" @default.
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- W3149683674 doi "https://doi.org/10.1016/j.ceramint.2021.03.297" @default.
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