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首页> 外文期刊>Journal of the European Ceramic Society >Proton defects in BaTiO_3: New aspects regarding the re-oxidation of dielectric materials fired in reducing atmospheres
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Proton defects in BaTiO_3: New aspects regarding the re-oxidation of dielectric materials fired in reducing atmospheres

机译:BaTiO_3中的质子缺陷:有关在还原性气氛中燃烧的介电材料再氧化的新方面

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摘要

The insulation resistance (IR) and the electrical endurance of Y-acceptor doped (Ba,Ca)(Ti,Zr)O_3 ceramics, fired in reducing atmospheres, are significantly improved by are-oxidation treatment. This effect has been studied by means of impedance spectroscopy (IS). Insulating grain boundary barrier layers were detected also without interaction with Ni-inner electrodes, as they are applied in multilayer ceramic capacitors (MLCCs). In moist firing atmospheres H_2O vapor was found to react with oxygen vacancies, forming positively charged hydroxyl defects (OH)O on regular oxygen sites in the crystal lattice. Hopping of protonic defects is supposed to raise the ionic conductivity. Re-oxidation in dry gas mixtures of O2 and N_2, however, desorbs water from the dielectric material and improves the IR. DC-field stress heavily degrades the grain boundary barriers. Protons in the dielectric material largely accelerate the electrical degradation. Hydroxyl defects are also considered to be responsible for alterations of the dielectric temperature characteristics at the Curie point.
机译:通过还原氧化处理可明显改善掺入Y的(Ba,Ca)(Ti,Zr)O_3陶瓷的绝缘电阻(IR)和耐电性。已经通过阻抗光谱法(IS)研究了这种效果。由于将其应用于多层陶瓷电容器(MLCC),因此也检测到绝缘的晶界势垒层,而没有与镍内电极相互作用。在潮湿的烧结气氛中,发现H_2O蒸气与氧空位反应,在晶格中规则的氧位上形成带正电的羟基缺陷(OH)O。质子缺陷的跳跃被认为可以提高离子电导率。但是,O2和N_2的干燥气体混合物中的再氧化会从介电材料中解吸水并改善IR。直流电场应力严重降低了晶界势垒。介电材料中的质子大大加速了电降解。羟基缺陷也被认为是引起居里点电介质温度特性变化的原因。

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