Significantly Enhanced Structural, Dielectric and Impedance Properties of BCZT-BFO Sensors

M. S. Habib, M. A. Rafiq, A. Maqbool
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Abstract

Multiferroics like [(Ba0.85Ca0.15) (Zr0.1Ti0.9) O3, BCZT] and (BiFeO3, BFO) with stochiometric amount were prepared mixed oxide solid state route adding CuO. The compositions were confirmed by X-ray diffraction technique, FTIR confirmed the formation of bonds and the clear idea of bonding pairs, FESEM supported the results of microstructure, and it was revealed that the addition of CuO increased the densification while it was also served as a sintering agent. The impedance spectroscopy (IS) was the tool that explain the relaxation phenomenon of the composition making agreements with the conduction mechanism that the material can be used as negative temperature coefficient of resistance (NTCR) for the applications of capacitors, sensors, actuators, and energy devices.
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BCZT-BFO传感器的结构、介电和阻抗性能显著提高
采用添加CuO的混合氧化物固态法制备了[(Ba0.85Ca0.15) (Zr0.1Ti0.9) O3, BCZT]和(BiFeO3, BFO)等量的多铁材料。x射线衍射技术证实了其组成,FTIR证实了键的形成和键对的清晰概念,FESEM支持了微观结构的结果,表明CuO的加入增加了致密性,同时也起到了烧结剂的作用。阻抗谱(IS)是解释该成分弛豫现象的工具,与该材料的传导机制一致,该材料可以用作电容器、传感器、致动器和能源器件的负温度电阻系数(NTCR)。
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