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首页> 外文期刊>Journal of the European Ceramic Society >Integration of BiFeO3 thick films onto ceramic and metal substrates by screen printing
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Integration of BiFeO3 thick films onto ceramic and metal substrates by screen printing

机译:通过丝网印刷将BiFeO3厚膜集成到陶瓷和金属基材上

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This study presents the preparation of bismuth ferrite (BiFeO3) thick films by a screen-printing method. We explain the influence of the annealing temperature on the diffusion processes, occurring through individual layers of the thick-film structure, densification, and interface reactions between similar to 15-mu m-thick BiFeO3 films and an Al2O3 substrate. The key parameters were identified and include the optimal annealing temperature and substrate purity, which need to be controlled in order to obtain high quality BiFeO3 thick films in terms of phase composition and microstructure. Taking into account these processing parameters, we present compositionally improved and high density BiFeO3 thick films on Ag metal foil, which were sintered at temperatures as low as 740 degrees C. While the local ferroelectric behavior of the BiFeO3 film has been confirmed by piezo-response force microscopy analysis, its macroscopic electrical response is characterized by a high electrical conductivity coupled with an interface-related diode-like current-voltage behavior. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究提出了通过丝网印刷法制备铁酸铋(BiFeO3)厚膜的方法。我们解释了退火温度对扩散过程的影响,扩散过程是通过厚膜结构的各个层,致密化以及类似于15微米厚的BiFeO3膜与Al2O3衬底之间的界面反应而发生的。确定了关键参数,其中包括最佳退火温度和衬底纯度,为了获得高质量的BiFeO3厚膜,从相组成和微观结构角度出发,必须对其进行控制。考虑到这些加工参数,我们介绍了在Ag金属箔上进行成分改进的高密度BiFeO3厚膜,该膜在低至740℃的温度下烧结。而BiFeO3膜的局部铁电行为已通过压电响应得到证实。力显微镜分析,其宏观电响应的特征是高电导率,以及与界面有关的二极管状电流-电压行为。 (C)2015 Elsevier Ltd.保留所有权利。

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