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High tetragonality barium titanate-based compositions and methods of forming the same

机译:高四方晶钛酸钡基组合物及其形成方法

摘要

Barium titanate-based compositions having a high tetragonality and methods of forming the same are provided, as well as devices formed from the compositions. The barium titanate-based compositions advantageously have a high tetragonality and small particle sizes. For example, in some embodiments, the barium titanate-based compositions have a tetragonality of greater than about 2.0 and an average particle size of less than about 0.3 micron. Some methods involve achieving high tetragonality by limiting the concentration of certain metals (other than barium or titanium) in the compositions and/or heat treating the compositions at relatively high temperatures. In some methods, the A/B ratio of the composition may be adjusted prior to heat treatment to ensure that a small particle size is maintained during heat treatment. The barium titanate-based compositions may be processed to form dielectric layers in electronic devices, such as MLCCs, having excellent electrical properties as a result of the high tetragonality and relatively small particle sizes.
机译:提供了具有高四方性的基于钛酸钡的组合物及其形成方法,以及由该组合物形成的装置。钛酸钡基组合物有利地具有高四方性和小粒径。例如,在一些实施方案中,基于钛酸钡的组合物具有大于约2.0的四方性和小于约0.3微米的平均粒度。一些方法涉及通过限制组合物中某些金属(钡或钛以外的金属)的浓度和/或在较高温度下对组合物进行热处理来实现高四方性。在一些方法中,可以在热处理之前调节组合物的A / B比,以确保在热处理期间保持小的粒度。基于钛酸钡的组合物可以被加工以形成电子器件中的介电层,例如MLCC,其由于高四方性和相对小的粒径而具有优异的电性能。

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