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首页> 外文期刊>CERAMICS INTERNATIONAL >(Bi1/2K1/2)TiO3-SrTiO3 solid-solution ceramics for high-temperature capacitor applications
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(Bi1/2K1/2)TiO3-SrTiO3 solid-solution ceramics for high-temperature capacitor applications

机译:(BI1 / 2K1 / 2)TiO3-SRTIO3高温电容器应用的固溶陶瓷

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摘要

The relaxor state of (Bi1/2K1/2)TiO3-SrTiO3 exhibits promising dielectric properties for high-temperature capacitor applications, but the spontaneous phase transition into the low-temperature ferroelectric state and the excessively high dielectric maximum temperature (T-m) at around 360 degrees C are the main drawback to this material. In this study we examined solid solutions of (Bi1/2K1/2)TiO3 with SrTiO3 to improve the temperature stability of the dielectric properties. As precursors to fabricate the sold-solution ceramics, fine powders of (Bi1/2K1/2)TiO3 and SrTiO3 were both synthesized by the hydrothermal method. Dense (1 - x)(Bi1/2K1/2)TiO3-SrTiO3 ceramics with x up to 0.5 were then obtained by reaction sintering of the powders. A crystal structure analysis revealed that the average symmetry of the solid-solution ceramics changes from tetragonal to cubic with increasing the SrTiO3 content. Dielectric measurements showed that the incorporation of SrTiO3 into (Bi1/2K1/2)TiO3 stabilizes the relaxor state to shift T-m largely toward lower temperatures. As a result, the sample with x = 0.5 exhibited a temperature-stable dielectric permittivity of 1700 +/- 15% over a wide temperature range from room temperature up to 260 degrees C. The electric-field and temperature dependences of the energy-storage properties of the sample were also investigated.
机译:(BI1 / 2K1 / 2)TiO3-SRTIO3的松弛状态表现出用于高温电容器应用的有希望的介电性能,但自发相转变为低温铁电状态和360左右的过高介电最高温度(TM)度C是该材料的主要缺点。在该研究中,我们将用SRTIO3检测(Bi1 / 2k1 / 2)TiO3的固体溶液,以改善电介质性能的温度稳定性。作为制造已溶液陶瓷的前体,(Bi1 / 2k1 / 2)TiO3和Srtio3的细粉末均由水热法合成。然后通过粉末反应烧结获得致密(1 - X)(Bi1 / 2K1 / 2)TiO3-SRTiO3陶瓷,其含量至0.5。晶体结构分析显示,随着SRTIO3含量的增加,固溶陶瓷的平均对称性从四方变为立方体。电介质测量表明,将SrtiO3掺入(Bi1 / 2k1 / 2)TiO3稳定放松状态,在很大程度上使T-m变为较低的温度。结果,具有X = 0.5的样品在宽温度范围内的温度稳定的介电介电常数,从室温高达260℃。电场和储能的温度依赖性还研究了样品的性质。

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