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Structural investigations of the co-fired interface of Pb-based relaxor ferroelectrics and Ag-Pd electrode

机译:铅基弛豫铁电体与银钯电极共烧界面的结构研究

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摘要

With the miniaturization trend of modern electronic devices and increasing demand for multilayer ceramic chip components, a full understanding of the role of the co-fired ceramic/electrode interface in the performance and long-term reliability of the components becomes very important. In the present work, the inter-diffusion and structure of the co-fired interface of Pb-based relaxor ferroelectrics and Ag-Pd metal electrode were investigated by scanning electron microscopy (SEM) and transmission electron microscopy-energy dispersive analysis of X-rays (TEM-EDAX). No strong structural distortions were observed at the co-fired ceramic/electrode interface except for a thin interfacial layer of 1.5 nm thick on each side of the interface. The ceramic near the interface retains the perovskite lattice structure. It is suggested that the diffused electrode compositions could be incorporated into the perovskite lattice.
机译:随着现代电子设备的小型化趋势以及对多层陶瓷芯片元件的需求的增加,充分理解共烧陶瓷/电极界面在元件性能和长期可靠性中的作用变得非常重要。本文通过扫描电子显微镜(SEM)和透射电子显微镜-X射线能谱分析研究了铅基弛豫铁电体与Ag-Pd金属电极共烧界面的相互扩散和结构。 (TEM-EDAX)。在共烧的陶瓷/电极界面上没有观察到强烈的结构变形,除了在界面的每一侧上厚1.5nm的薄界面层。界面附近的陶瓷保留了钙钛矿的晶格结构。建议将扩散的电极组合物掺入钙钛矿晶格中。

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