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Dielectric Ferroelectric and Magnetic Properties of Sm-Doped BiFeO3 Ceramics Prepared by a Modified Solid-State-Reaction Method

机译:改性固态反应法制备掺S的BiFeO3陶瓷的介电铁电和磁性

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摘要

Sm-doped BiFeO3 (BFO) material was prepared using a modified solid-state-reaction method, which used fast heating and cooling during the sintering process. The Sm doping level varied between 1 mol % to 8 mol %. Processing parameters, such as sintering temperature and annealing temperature, were optimized to obtain high-quality samples. Based on their dielectric properties, the optimum sintering and annealing temperatures were found to be 300 °C and 825 °C, respectively. Leakage-free square-shaped ferroelectric hysteresis loops were observed in all samples. The remnant polarization was maximized in the 5 mol %-doped sample (~35 μC/cm2). Furthermore, remnant magnetization was increased after the Sm doping and the 8 mol%-doped sample possessed the largest remnant magnetization of 0.007 emu/g. Our results demonstrated how the modified solid-state-reaction method proved to be an effective method for preparing high-quality BiFeO3 ceramics, as well as how the Sm dopant can efficiently improve ferroelectric and magnetic properties.
机译:使用改良的固态反应方法制备了掺m的BiFeO3(BFO)材料,该方法在烧结过程中进行了快速加热和冷却。 Sm掺杂水平在1mol%至8mol%之间变化。优化处理参数,例如烧结温度和退火温度,以获得高质量的样品。基于它们的介电性能,最佳的烧结和退火温度分别为300°C和825°C。在所有样品中均观察到无泄漏的方形铁电磁滞回线。在5 mol%掺杂的样品(〜35μC/ cm 2)中,残余极化作用最大。此外,在Sm掺杂之后残余磁化强度增加,并且8mol%掺杂的样品具有0.007emu / g的最大残余磁化强度。我们的结果表明,改进的固态反应方法如何证明是制备高质量BiFeO3陶瓷的有效方法,以及Sm掺杂剂如何有效改善铁电和磁性能。

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