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Direct mechanosynthesis of pure BiFeO3 perovskite nanoparticles: reaction mechanism

机译:纯粹的BiFeO3钙钛矿纳米颗粒的直接机械合成:反应机理

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摘要

In this work, a mechanochemical procedure is proposed as a simple and fast metiiod to syntliesize the pure BiFeO3 perovskite phase as a nanostructured material without the need for purification treatments, while the mechanochemical reaction mechanism has been investigated and correlated with that of the conventional solid-state reaction. Thus, different milling conditions have been used as a tool for tailoring the crystallite size of the resulting BiFeO3 nanoparticles. The materials prepared by the mechanochemical reaction could be annealed or sintered without the formation of undesirable phases. Both the ferroelectric and ferromagnetic transitions were observed by DSC Finally, the dielectric constants of the prepared material at different frequencies as a function of the temperature have been measured, showing that the material is clearly an isolator below 200 °C, characteristic of a high quality BiFeO3 material.
机译:在这项工作中,提出了一种机械化学方法,该方法简单,快速,无需纯化处理即可将纯BiFeO3钙钛矿相合成为纳米结构材料,同时对机械化学反应机理进行了研究,并将其与常规固体化学方法相关联。状态反应。因此,已经使用不同的研磨条件作为调整所得的BiFeO 3纳米颗粒的微晶尺寸的工具。通过机械化学反应制备的材料可以退火或烧结而不会形成不希望的相。通过DSC观察到铁电和铁磁跃迁。最后,测量了所制备材料在不同频率下随温度变化的介电常数,表明该材料显然是低于200°C的绝缘体,具有高质量的特性BiFeO3材料。

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