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Large electrocaloric strength and broad electrocaloric temperature span in lead-free Ba0.85Ca0.15Ti1?xHfxO3ceramics

机译:无铅Ba 0.85 Ca 0.15 Ti 1? x Hf <时的大电热强度和宽的电热温度跨度sub> x O 3 陶瓷

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The electrocaloric (EC) effect of Ba0.85Ca0.15Ti1?xHfxO3 (abbreviated as: BCTHx) ceramics has been systematically investigated using an indirect method. Our results indicate that the BCTH0.06 ceramic exhibits a sharp ferroelectric–paraelectric phase transition, around which a large EC value of 1.03 K is obtained under the electric field of 35 kV cm?1, associated with a relatively broad electrocaloric temperature span. The giant EC strength of the BCTH0.06 ceramic is 0.29–0.31 K mm kV?1 under an external electric field of 9 to 35 kV cm?1, which is larger than most previous values. The temperature of the EC peak shifts to higher temperature as the electric field increases, which implies that electric field may be another powerful tool to obtain a large EC value and modulate the EC peak. The ceramics with higher Hf contents display a strong diffusive character. The BCTH0.15 ceramic shows a relatively small EC strength (0.10–0.13 K mm kV?1) with a broader EC temperature span. The diffusive feature of the BCTHx ceramics with high Hf concentrations broaden the electrocaloric temperature span and meanwhile decrease the EC strength considerably. Our results indicate that compositional modification in BaTiO3-based ceramics offers a promising route for designing potential dielectric cooling materials with excellent EC properties.
机译:Ba 0.85 Ca 0.15 Ti 1? x Hf x O 3 < / small>(缩写为:BCTH x )陶瓷已使用间接方法进行了系统研究。我们的结果表明,BCTH 0.06 陶瓷表现出尖锐的铁电-顺电相变,在35 kV cm的电场下,其周围的EC值为1.03K。 ?1 ,与相对较宽的电热温度范围相关。在外部电的作用下,BCTH 0.06 陶瓷的巨大EC强度为0.29–0.31 K mm kV ?1 9至35 kV cm ?1 的磁场,比以前的大多数值大。随着电场的增加,EC峰的温度移至更高的温度,这意味着电场可能是获得大EC值并调制EC峰的另一个强大工具。 Hf含量较高的陶瓷具有很强的扩散特性。 BCTH 0.15 陶瓷显示出相对较小的EC强度(0.10–0.13 K mm kV ?1 ),且EC的温度范围更广。高Hf浓度的BCTH x 陶瓷的扩散特征扩大了电热温度范围,同时显着降低了EC强度。我们的结果表明,BaTiO 3 基陶瓷的成分改性为设计具有优异EC性能的潜在介电冷却材料提供了一条有希望的途径。

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