首页> 外文期刊>Journal of the European Ceramic Society >Local analysis of the grain and grain boundary contributions to the bulk dielectric properties of Ca(Cu3-yMgy)Ti4O12 ceramics: Importance of the potential barrier at the grain boundary
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Local analysis of the grain and grain boundary contributions to the bulk dielectric properties of Ca(Cu3-yMgy)Ti4O12 ceramics: Importance of the potential barrier at the grain boundary

机译:晶粒和晶界对Ca(Cu3-yMgy)Ti4O12陶瓷整体介电性能的贡献的局部分析:势垒在晶界的重要性

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The present work focuses on two aspects related to the synthesis and the dielectric properties of CaCu3Ti4O12 (CCTO) ceramics. Effective strategies able to synthesize high quality CCTO, with reduced dielectric losses and high relative permittivity, are achieved by the substitution of Cu ion by Mg one in the crystal. Ca(Cu3-yMgy)Ti4O12 ceramics have been synthesized by conventional mixed oxide method involving CCTO and MgO. This approach is found to drastically reduce the synthesis time by lowering the eutectic point of CCTO as a result of the small fraction (1-3 wt%) of MgO added to the mixture. Experimental data have been used to successfully confirm this substitution and the only presence of CuO at grain-boundaries. The role of grain and grain boundary contributions on the dielectric properties of ceramics are investigated. It is found that samples containing 1% MgO lead to excellent relative permittivity values of the order of 3.5 x 10(4). In these substituted ceramics, extracted relative permittivity values are found to be extremely stable, with low loss tangent (<0.06), up to 100 kHz at room temperature. From the various samples investigated, the optimized ceramics are found to contain large grains (>= 15 mu m). Local intra-grain and inter-grain electrical transport Measurements show that the grains and their respective grain boundaries exhibit metallic and semiconducting behaviors, respectively. This approach confirms the crucial role of the potential barrier at the grain boundary in determining the dielectric properties of such Ca(Cu3-yMgy)Ti4O12 ceramics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:目前的工作集中在与CaCu3Ti4O12(CCTO)陶瓷的合成和介电性能有关的两个方面。通过在晶体中用Mg取代Cu离子,可以实现有效的策略,该策略可以合成高质量CCTO,并具有降低的介电损耗和较高的相对介电常数。 Ca(Cu3-yMgy)Ti4O12陶瓷是采用CCTO和MgO的常规混合氧化物方法合成的。由于将少量MgO(1-3 wt%)添加到混合物中,结果发现该方法可通过降低CCTO的共晶点来大大减少合成时间。实验数据已被用来成功地确认这种取代和晶界处唯一的CuO存在。研究了晶粒和晶界贡献对陶瓷介电性能的作用。发现含有1%MgO的样品会导致3.5 x 10(4)的极好的相对介电常数值。在这些取代的陶瓷中,提取的相对介电常数值非常稳定,在室温下高达100 kHz时具有低损耗角正切(<0.06)。从研究的各种样品中,发现优化的陶瓷包含大晶粒(> = 15微米)。局部晶粒内和晶粒间电传输测量表明,晶粒及其各自的晶界分别表现出金属和半导体行为。这种方法证实了在确定这种Ca(Cu3-yMgy)Ti4O12陶瓷介电性能时,晶界处势垒的关键作用。 (C)2015 Elsevier Ltd.保留所有权利。

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