首页> 外文期刊>Journal of the European Ceramic Society >Formation and characterization of three-ply structured multiferroic Sm_(0.88)Nd_(0.12)Fe_(1.93)-Pb(Zr_(0.53)Ti_(0.47))O_3 ceramic composites via a solid olution process
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Formation and characterization of three-ply structured multiferroic Sm_(0.88)Nd_(0.12)Fe_(1.93)-Pb(Zr_(0.53)Ti_(0.47))O_3 ceramic composites via a solid olution process

机译:三层结构多铁性Sm_(0.88)Nd_(0.12)Fe_(1.93)-Pb(Zr_(0.53)Ti_(0.47))O_3陶瓷复合物的形成和表征

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摘要

A new three-ply structured multiferroic Sm_(0.88)Nd_(0.12)Fe_(1.93)-Pb(Zr_(0.53)Ti_(0.47))O_3 (MS-PZT) ceramic composite has been developed successfully by cofiring at 900 °C under argon atmosphere via a solid solution process. The magnetic and polarization hysteresis loops prove the coexistence of the ferromagnetic and ferroelectric phases in the composites. TEM images show the alloy particles were dispersed uniformly and mainly located at the PZT grain boundaries. The DC resistivity as high as 10~9-10~(10)?.cm was obtained and only varies slightly with the volume fraction of the conductive phase Sm_(0.88)Nd_(0.12)Fe_(1.93). The composites can be poled under a high electric field strength at a temperature of 150-180 °C. The dielectric, piezoelectric, and magnetic properties of the composites can be tailored according to the desirable requirement to meet designated application by a simple, flexible, and reproducible route, providing a promising potential approach to a new class of electric circuit and significant miniaturization of devices.
机译:通过在900°C下共烧成功开发了新型三层结构的多铁性Sm_(0.88)Nd_(0.12)Fe_(1.93)-Pb(Zr_(0.53)Ti_(0.47))O_3(MS-PZT)陶瓷复合材料通过固溶过程形成氩气氛。磁滞和极化磁滞回线证明了复合物中铁磁相和铁电相的共存。 TEM图像显示合金颗粒均匀分散并且主要位于PZT晶界。获得的直流电阻率高达10〜9-10〜(10)Ω.cm,并且仅随导电相Sm_(0.88)Nd_(0.12)Fe_(1.93)的体积分数而略有变化。可以在150-180°C的高温下将复合材料极化。复合材料的介电,压电和磁性能可根据所需要求进行定制,以通过简单,灵活和可复制的途径满足指定的应用,为新型电路和设备的显着小型化提供了有希望的潜在方法。

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