2015
DOI: 10.1016/j.jallcom.2014.09.171
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Enhanced energy storage performance in (Pb0.858Ba0.1La0.02Y0.008)(Zr0.65Sn0.3Ti0.05)O3–(Pb0.97La0.02)(Zr0.9Sn0.05Ti0.05)O3 anti-ferroelectric composite ceramics by Spark Plasma Sintering

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Cited by 162 publications
(61 citation statements)
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References 20 publications
(18 reference statements)
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“…The maximum energy storage density obtained was 0.9 J/cm 3 , which was 300% larger than conventionally sintered ceramics. Zhang et al have reported the beneficial effects of spark plasma sintering (SPS) technique for improving energy storage density in (Pb 0.858 Ba 0.1 La 0.02 Y 0.008 )(Zr 0.65 Sn 0.3 Ti 0.05 )O 3 -(Pb 0.97 La 0.02 )(Zr 0.9 Sn 0.05 Ti 0.05 )O 3 (PBLYZST–PLZST) AFE ceramics [70]. It was reported that SPS is helpful to supress the diffusion behavior between the tetragonal and orthorhombic phases.…”
Section: Influence Of Other Factorsmentioning
confidence: 99%
“…The maximum energy storage density obtained was 0.9 J/cm 3 , which was 300% larger than conventionally sintered ceramics. Zhang et al have reported the beneficial effects of spark plasma sintering (SPS) technique for improving energy storage density in (Pb 0.858 Ba 0.1 La 0.02 Y 0.008 )(Zr 0.65 Sn 0.3 Ti 0.05 )O 3 -(Pb 0.97 La 0.02 )(Zr 0.9 Sn 0.05 Ti 0.05 )O 3 (PBLYZST–PLZST) AFE ceramics [70]. It was reported that SPS is helpful to supress the diffusion behavior between the tetragonal and orthorhombic phases.…”
Section: Influence Of Other Factorsmentioning
confidence: 99%
“…[4][5][6][7][8][13][14][15][16][17][18] A lot of reports of high energy densities have been achieved on PLZST AFEs due to their excellent antiferroelectric behaviors. 4,7,[16][17][18] Recently, the highest W re of 6.4 J/cm 3 to date in ceramics has been demonstrated on PLZST based AFE ceramics. 16 However, the energy efficiency is usually less than 75% due to the large electrical hysteresis.…”
mentioning
confidence: 99%
“…4,7,[16][17][18] Recently, the highest W re of 6.4 J/cm 3 to date in ceramics has been demonstrated on PLZST based AFE ceramics. 16 However, the energy efficiency is usually less than 75% due to the large electrical hysteresis. 7,16,18 Besides, these reports are mostly focused on improving the energy density, with few aimed to explore the temperature stability.…”
mentioning
confidence: 99%
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“…5,6 These applications of AFE materials are designed from different AFE parameters if an electric field is applied, the AFE tetragonal (AFEtel) phase is transformed into its neighboring ferroelectric rhombohedral (FErh) phase. 7,8 To miniaturize the size and weight of energy storage devices, 9 AFE materials with high effective energy density are required. Since AFE materials have double hysteresis loops and the partial energy is exhausted during the depolarization process, the effective energy density is equal to the area between the polarization axis and the antiferroelectric to ferroelectric (AFE-to-FE) switching hysteresis loops.…”
Section: Introductionmentioning
confidence: 99%