首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Temperature-dependent dielectric relaxation and high tunability of (Ba1-xSrx)TiO3 ceramics
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Temperature-dependent dielectric relaxation and high tunability of (Ba1-xSrx)TiO3 ceramics

机译:温度依赖性介电弛豫和(BA1-XSRX)TiO3陶瓷的高可调性

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摘要

(Ba1-xSrx)TiO3 (x = 0.35, 0.50, abbreviated as BST35 and BST50, respectively) ceramics were prepared by sol-gel route. We researched their dielectric relaxation and tunability in a large temperature range of 150 950 K. The dielectric tunabilities and figure of merit of BST35 and BST50 ceramics at 288 K were 68.58% and 54.6, 19.4% and 114, respectively, which indicated the ceramics are promising candidates for tunable capacitor applications. Sr2+ doping can reduce the phase transition temperature of ferroelectric to paraelectric. The dielectric diffuse in the dielectric relaxation was observed in the high temperature region. A broad dielectric maximum shifted to higher temperature with increasing frequency, signifying the relaxor-type behavior of these ceramics. Impedance and dielectric measurements were studied to analyze their temperature dependence of dielectric properties. A single frequency arc observed in Cole Cole plots of BST35 ceramics suggested the relaxations mainly correspond to a grain boundaries response; while two frequency arcs indicated both grain and grain boundaries contribute to the dielectric relaxation of BST50 ceramics. The activation energy for relaxation and conduction was calculated, which suggested the oxygen vacancies play a critical role in the dielectric relaxation process of BaxSc1-xTiO3 ceramics at high temperatures. (C) 2017 Elsevier B.V. All rights reserved.
机译:(BA1-XSRX)TiO3(x = 0.35,0.50,分别缩写为BST35和BST50)陶瓷是陶瓷。我们研究了150 950 K的大温度范围内的介电弛豫和可调性。分别为288 k的BST35和BST50陶瓷的介质可爱和优异,分别为68.58%和54.6,19.4%和114,表明陶瓷是有希望的可调谐电容器应用的候选人。 SR2 +掺杂可以降低铁电的相转变温度与10型电极。在高温区域中观察到介电弛豫中的电介质漫射。随着频率的增加,宽介电最大值移动到更高的温度,表示这些陶瓷的松弛剂型行为。研究了阻抗和介电测量以分析它们对介电性质的温度依赖性。在BST35陶瓷的COLE COLE图中观察到的单频弧,建议放松主要对应于晶界反应;虽然两个频率弧指示谷物和晶粒边界都有助于BST50陶瓷的介电弛豫。计算出弛豫和传导的激活能量,这提出了氧空位在高温下BaxSC1-Xtio3陶瓷的介电弛豫过程中起重要作用。 (c)2017年Elsevier B.V.保留所有权利。

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