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Structural and electrical properties of sol-gel-derived lead titanate nanofilms with different pb contents for mim capacitors

机译:溶胶-凝胶衍生的不同铅含量的钛酸铅纳米薄膜的结构和电性能

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摘要

Metal-insulator-metal (MIM) capacitors based on lead titanate (PbTiO3) nanofilms were prepared using a novel method involving modified spin coating onto the bare electrodes of a coated glass. Different solutions were prepared by adding different concentrations of lead acetate (PbAc) powder to improve the electrical properties of the PbTiO3 films. The nanofilms were characterized in terms of their surface morphology, dielectric properties, and current-voltage characteristics. Physical and dielectric properties are related to the increased PbAc content in the films prepared within the range of 5-25 wt.%. The films with 10 wt.% PbAc provide acceptable dielectric permittivity, low loss factor, and improved capacitance density at frequencies lower than 100 kHz. Low leakage current densities and high resistivity behavior can be obtained at approximately 10(-7) A cm(2). Therefore, the resultant films are suitable for MIM capacitor applications and exhibit potential for memory storage applications.
机译:基于钛酸铅(PbTiO3)纳米膜的金属-绝缘体-金属(MIM)电容器是使用一种新颖的方法制备的,该方法包括在涂覆玻璃的裸露电极上进行旋涂。通过添加不同浓度的醋酸铅(PbAc)粉末以改善PbTiO3薄膜的电性能,制备了不同的溶液。纳米膜的表面形态,介电性能和电流-电压特性均得到了表征。物理和介电性质与在5-25重量%范围内制备的膜中PbAc含量的增加有关。具有10 wt。%PbAc的薄膜在低于100 kHz的频率下具有可接受的介电常数,低损耗因子和改善的电容密度。在大约10(-7)A cm(2)时可以获得低泄漏电流密度和高电阻率行为。因此,所得膜适用于MIM电容器应用,并具有用于存储器存储应用的潜力。

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