材料科学
电介质
钛酸钡
复合材料
复合数
高-κ电介质
电容器
粒径
环氧树脂
介电常数
陶瓷
介电损耗
泄漏(经济)
电气工程
光电子学
化学工程
电压
经济
宏观经济学
工程类
作者
Sung‐Dong Cho,Joo-Yeon Lee,Kyung-Wook Paik
标识
DOI:10.1109/emap.2001.983959
摘要
Polymer/ceramic composite film is of great interest as dielectric material for embedded capacitor applications. In this paper, effects of powder size on dielectric constant and leakage current of epoxy/BaTiO/sub 3/ composite film fabricated by spin-coating were investigated using bisphenol-A type epoxy and 6 kinds of barium titanate powders with diameter ranges of 0.1-0.9 /spl mu/m. Dielectric constant of the composite films increased as particle size increased. This was due to tetragonality increase, which was observed by XRD analysis, with particle size increase. In addition to tetragonality, better dispersibility also contributed to high dielectric constant of bigger powder. Leakage current of composite films increased dramatically as particle size increased. It is presumably due to the decrease of the number of particles per unit length, resulting in decrease of the number of contacts. As the number of contacts acting as a potential barrier reduces, potential barrier lowering effects become larger. When we use larger powder, we can obtain higher dielectric constant with larger leakage current. As a result, there is tradeoff between high dielectric constant and low leakage current, and 0.5/spl sim/0.7 /spl mu/m size powder would be optimum for embedded capacitor applications.
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