Department of Materials Engineering, Korea Aerospace University, Goyang, Korea.
IEEE Trans Ultrason Ferroelectr Freq Control. 2012 Sep;59(9):1894-9. doi: 10.1109/TUFFC.2012.2403.
Chemical-solution-derived thin film synthesis and dielectric characterizations of (1 - x)BaTiO(3-x)Bi(Mg,Ti) O(3) complex perovskites with compositions x <0.15 have been explored for temperature-stable high-energy-density capacitor applications. Solution chemistry has been optimized to synthesize and stabilize the precursor solution. Solution-derived (1 - x)BaTiO(3-x)Bi(Mg,Ti)O(3) thin film samples in thicknesses ranging from 250 to 500 nm were fabricated by repeated spinning and subsequent crystallization processes. These thin films showed nearly linear polarization response with high relative dielectric permittivity exceeding 900, which is beneficial for high-capacitance-density and high-energy-density capacitors. Average dielectric breakdown strengths of the dense films were as high as 2.08 MV/cm. The BaTiO(3)-Bi(Mg,Ti) O3 samples showed very low leakage current densities of the order of 10-8 A/cm(2) even at temperatures of 200°C. Based on the structural stability at high temperatures of the pseudocubic perovskite, the high dielectric permittivity and the typical P-E behaviors of the BaTiO(3)-Bi(Mg,Ti)O(3) thin films were also maintained at such high temperatures. Resulting energy density of the 500-nm-thick 0.88BaTiO(3)-0.12Bi(Mg,Ti) O(3) thin film was as high as 37 J/cm(3) at 1.9 MV/cm. The high energy density and excellent temperature stability of the Ba- TiO(3)-Bi(Mg,Ti)O(3) complex perovskite show promise for use in high-temperature pulse power capacitor applications.
已经探索了(1 - x)BaTiO(3-x)Bi(Mg,Ti)O(3)复合钙钛矿的化学溶液衍生薄膜合成和介电特性,其中 x <0.15,用于温度稳定的高能量密度电容器应用。优化了溶液化学以合成和稳定前体溶液。通过重复旋转和随后的结晶过程,制备了厚度在 250 至 500nm 之间的溶液衍生(1 - x)BaTiO(3-x)Bi(Mg,Ti)O(3)薄膜样品。这些薄膜表现出几乎线性的极化响应,具有超过 900 的高相对介电常数,这有利于高电容密度和高能量密度电容器。致密膜的平均介电击穿强度高达 2.08MV/cm。即使在 200°C 的温度下,BaTiO(3)-Bi(Mg,Ti)O3 样品的漏电流密度也非常低,约为 10-8A/cm(2)。基于高温下赝立方钙钛矿的结构稳定性,BaTiO(3)-Bi(Mg,Ti)O(3)薄膜的高介电常数和典型的 P-E 行为也在如此高的温度下得以维持。500nm 厚的 0.88BaTiO(3)-0.12Bi(Mg,Ti)O(3)薄膜的能量密度高达 37J/cm(3),在 1.9MV/cm 下。BaTiO(3)-Bi(Mg,Ti)O(3)复合钙钛矿的高能量密度和优异的温度稳定性有望用于高温脉冲功率电容器应用。