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Giant Negative Electrocaloric Effect in Anti-Ferroelectric (Pb0.97La0.02)(Zr0.95Ti0.05)O3 Ceramics

机译:反铁电(Pb0.97La0.02)(Zr0.95Ti0.05)O3陶瓷的巨大负电热效应

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A giant electrocaloric effect is reported in (Pb0.97La0.02)(Zr0.95Ti0.05)O3 anti-ferroelectric ceramics. These samples were fabricated by a solid-state mixed oxide technique. Dielectric analyses were employed to investigate the anti-ferroelectric (AFE) and ferroelectric (FE) phase transitions of the sample. During the heating process, the phase transition from the orthorhombic anti-ferroelectric phase (AFEO) to the tetragonal anti-ferroelectric phase (AFET) occurs at 155 °C, and the phase transition from AFET to PE occurs at 225 °C. Using the Maxwell relationship, the entropy change ΔS and adiabatic temperature change ΔT were obtained at different electric fields ranging from 40 to 65 kV/cm. The maximum adiabatic temperature change (ΔTmax = ?7.47 K) was obtained at 50 kV/cm, which was attributed to the field-induced phase transformation between the anti-ferroelectric and ferroelectric phases. These results showed that PLZT2/95/5 ceramics possess a large negative electrocaloric effect value, which could be applied in achieving cooling power as refrigerants.
机译:在(Pb0.97La0.02)(Zr0.95Ti0.05)O3反铁电陶瓷中报道了巨大的电热效应。这些样品是通过固态混合氧化物技术制造的。使用介电分析来研究样品的反铁电(AFE)和铁电(FE)相变。在加热过程中,从正交晶体反铁电相(AFEO)到四方反铁电相(AFET)的相变在155°C发生,从AFET到PE的相变在225°C发生。使用麦克斯韦关系,在40至65 kV / cm的不同电场下获得了熵变ΔS和绝热温度变化ΔT。在50 kV / cm处获得了最大绝热温度变化(ΔTmax=?7.47 K),这归因于反铁电和铁电相之间的场致相变。这些结果表明PLZT2 / 95/5陶瓷具有很大的负电热效应值,可用于实现制冷剂的冷却能力。

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