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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Giant electrocaloric effect in BaTiO3-Bi(Mg1/2Ti1/2)O-3 lead-free ferroelectric ceramics
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Giant electrocaloric effect in BaTiO3-Bi(Mg1/2Ti1/2)O-3 lead-free ferroelectric ceramics

机译:BATIO3-BI(MG1 / 2TI1 / 2)O-3无铅铁电陶瓷中的巨型电热效应

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The microstructure, dielectric property and electrocaloric effect were investigated in the lead-free (1-x) BaTiO3-x (BiMg1/2Ti1/2)O-3 ((1-x) BTex BMT, x = 0.0-0.05) ferroelectric ceramics. Under the low electric field (E = 20 kV cm(-1)), the coexistence of a positive and negative electrocaloric effect was obtained in (1-x)BT-x BMT (x = 0.04) ceramics system using the Maxwell relation. Negative electrocaloric behavior disappears and the positive electrocaloric effect was only observed at high electric field (E = 25 kV cm(-1)). Firstly, the values of both negative electrocaloric effect under low electric field of E = 20 kV cm(-1) (NECE) and positive electrocaloric effect in the high electric field of E = 25 kV cm(-1) (PECE) increase, then decrease with increasing BMT content in the ceramics. The 0.98BT-0.02BMT ceramic shows the excellent PECE and NECE capabilities. The corresponding giant electrocaloric effect values of -0.37 K (42 degrees C) at 20 kV cm(-1) and 1.21 K (143 degrees C) at 55 kV cm(-1) were observed. These results show great potential in achieving large cooling power as refrigerants. (c) 2018 Elsevier B.V. All rights reserved.
机译:在无铅(1-X)BATIO3-X(BIMG1 / 2TI1 / 2)O-3((1-X)BTEX BMT,X = 0.0-0.05)铁电陶瓷中研究了微观结构,介电性和电热效应。在低电场(E& = 20kVcm(-1))下,使用(1-x)bt-x bmt(x& = 0.04)陶瓷系统中获得正极电热效应的共存麦克斯韦联系。负电热行为消失,并且仅在高电场(E> = 25kVcm(-1))中观察到正电热效应。首先,在E& = 20kVcm(-1)(Nece)的低电场下的负电蜂效应的值和E&gt的高电场中的正电热效应; = 25kVcm(-1)( PECE)增加,随后随着陶瓷中的增加BMT含量而降低。 0.98BT-0.02BMT陶瓷显示出优异的PECE和NECE能力。观察到在55kVcm(-1)的20kVcm(-1)和1.21k(143℃)下的-0.37k(42℃)的相应巨大电流效果值。这些结果表现出实现大型冷却功率作为制冷剂的巨大潜力。 (c)2018年elestvier b.v.保留所有权利。

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