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- W4380089905 abstract "BaTiO3 (BT) ceramics with excellent energy storage performance (ESP) are in great demand in the power electronics industry due to their high power density. However, the traditional BT-based ceramics cannot simultaneously achieve high breakdown strength and high maximum polarization. Here, we bring forth ideas of design strategy to promote the ESP of the BaTi0.96Li0.04O2.94 ceramics by domain structure engineering to construct the special crossover region between ferroelectric and relaxor ferroelectric state, which possesses ferroelectric domains of different scales. The Bi(Mg2/3Ta1/3)O3-doped ceramic shows high energy storage density of 3.28 J/cm3 with slim hysteresis loop at large BDS of 380 kV/cm, and accompany with high efficiency of 88.52%. The ESP are less than 3% at the temperature range of 20∼200 °C, and the ceramic exhibits outstanding temperature stability. Our work demonstrates that the crossover region in BT ceramics is conducive to obtaining excellent ESPs, providing a reference for the structural optimization of high-performance BaTiO3 ceramics." @default.
- W4380089905 created "2023-06-10" @default.
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- W4380089905 date "2023-06-01" @default.
- W4380089905 modified "2023-10-17" @default.
- W4380089905 title "Improved energy storage performance of lead-free BaTi0.96Li0.04O2.94 ceramics via domain structure engineering" @default.
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- W4380089905 doi "https://doi.org/10.1016/j.ceramint.2023.06.073" @default.
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