2019
DOI: 10.1007/s13391-019-00124-z
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High Energy Storage Properties and Electrical Field Stability of Energy Efficiency of (Pb0.89La0.11)(Zr0.70Ti0.30)0.9725O3 Relaxor Ferroelectric Ceramics

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Cited by 51 publications
(11 citation statements)
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“…However, this metastable electric field‐induced polar state returns to its initial state during unloading, determining the presence of the current peaks in the second and fourth quadrants of the I‐E loops. Analogous observations of current humps in I‐E loops were previously reported for other RFEs including both Aurivillius and perovskite structures . Kholkin et al did not find any field‐induced switching event in the P ‐ E loops of BBNO ceramics generated at three different temperatures (−180, 0, and 100°C) with an electric field amplitude of E max = 20 kV/cm, which is probably due to the much lower E max (≤20 kV/cm) compared to that used in our work (80‐89 kV/cm).…”
Section: Resultssupporting
confidence: 90%
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“…However, this metastable electric field‐induced polar state returns to its initial state during unloading, determining the presence of the current peaks in the second and fourth quadrants of the I‐E loops. Analogous observations of current humps in I‐E loops were previously reported for other RFEs including both Aurivillius and perovskite structures . Kholkin et al did not find any field‐induced switching event in the P ‐ E loops of BBNO ceramics generated at three different temperatures (−180, 0, and 100°C) with an electric field amplitude of E max = 20 kV/cm, which is probably due to the much lower E max (≤20 kV/cm) compared to that used in our work (80‐89 kV/cm).…”
Section: Resultssupporting
confidence: 90%
“…Analogous observations of current humps in I-E loops were previously reported for other RFEs including both Aurivillius 34 and perovskite structures. [35][36][37][38] Kholkin et al did not find any field-induced switching event in the P-E loops of BBNO ceramics generated at three different temperatures (−180, 0, and 100°C) with an electric field amplitude of E max = 20 kV/cm, 30 which is probably due to the much lower E max (≤20 kV/cm) compared to that used in our work (80-89 kV/cm). As a result, this is the first time that supporting evidence is reported for the existence of PNRs within BBNO ceramics and their dynamic response to an external electric field.…”
Section: Methodscontrasting
confidence: 65%
“…Besides research, multiferroics have potential applications as novel electronic memory devices, transducers, actuators, capacitive filters or inductive filters for telecommunication, magnetic field sensors, electric-write magnetic-read memory devices etc. [7]- [14]. Nano ferrites or nano-multiferroics have various applications in areas like noval storage devices, Nano-electric generators, ferro-fluids, microwave devices, antennas, magnetic refrigerators, heterogeneous catalysts, targeted drug delivery and as repulsion-suspension in levitated railway systems [14]- [16].…”
Section: Introductionmentioning
confidence: 99%
“…[7]- [14]. Nano ferrites or nano-multiferroics have various applications in areas like noval storage devices, Nano-electric generators, ferro-fluids, microwave devices, antennas, magnetic refrigerators, heterogeneous catalysts, targeted drug delivery and as repulsion-suspension in levitated railway systems [14]- [16]. Among various ferroelectrics like Lead Titanate, Lead zirconium titanate, Barium Titanate, Rochelle salt etc, Barium titanate is used widely due to its less toxicity compared to lead based materials.…”
Section: Introductionmentioning
confidence: 99%
“…For example, the researches of actuator in PZT ceramics are increasing due to a large electrostrain under low electric field. In 2019, Kumar et al[66] reported (Pb 0.89 La 0.11 )(Zr 0.70 Ti 0.30 ) 0.9725 O 3 (PLZT 11/70/30) ceramics achieved a…”
mentioning
confidence: 99%