首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >High-Temperature and High-Pressure Aqueous Solution Formation, Growth, Crystal Structure, and Magnetic Properties of BiFeO3 Nanocrystals
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High-Temperature and High-Pressure Aqueous Solution Formation, Growth, Crystal Structure, and Magnetic Properties of BiFeO3 Nanocrystals

机译:BiFeO3纳米晶体的高温高压水溶液形成,生长,晶体结构和磁性

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摘要

In situ synchrotron radiation powder X-ray diffraction (SR-PXRD) was applied to study the formation and growth of BiFeO3 nanocrystals, revealing that phase pure BiFeO3 can be obtained in high-temperature, high-pressure aqueous solution using Bi(NO3)_3 and Fe(NO3)_3 · 9H2O as precursors and KOH as minera-lizer. The method gives a rapid way for preparation of nanomaterials, and the formation of BiFeO3 can be finished within seconds after its initial nucleation in near-critical aqueous solution. As proof of concept BiFeO3 nanocrystals were subsequendy synthesized in a continuous flow supercritical system and for reference also in autoclaves. High resolution multitemperature SR-PXRD data were measured between 100 and 1000 K with a step size of 100 K. The magnetic properties of both the autoclave and the continuous flow samples are studied.
机译:用原位同步辐射粉末X射线衍射(SR-PXRD)研究了BiFeO3纳米晶体的形成和生长,揭示了在高温高压下使用Bi(NO3)_3可以得到纯的BiFeO3相。 Fe(NO3)_3·9H2O为前驱体,KOH为矿化剂。该方法为制备纳米材料提供了快速的方法,BiFeO3的形成可以在其在近临界水溶液中初始成核后数秒内完成。作为概念的证明,BiFeO3纳米晶体是在连续流超临界系统中随后合成的,也可在高压釜中提供参考。在100至1000 K之间以100 K的步长测量了高分辨率多温度SR-PXRD数据。研究了高压釜和连续流动样品的磁性能。

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