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Growth kinetics of vanadium pentoxide nanostructures under hvdrothermal conditions

机译:水热条件下五氧化二钒纳米结构的生长动力学

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The work reported here involved a study of the growth kinetics of V_2O_5nH_2O nanostructures under hydrothermal conditions. The coarsening process of V_2O_5nH_2O nanoribbons was followed by subjecting the as-prepared suspensions to hydrothermal treatments at 80℃ for periods ranging from 0 to 7200 min. X-ray diffraction (XRD) confirms that the hydrothermal treatments at 80 ℃ caused no significant modification of the long-range order structure of samples subjected to different periods of hydrothermal treatment. Field emission scanning transmission electron microscope (FE-STEM) was used to analyze the morphology and width distribution of the nanostructures. The results indicated that the crystal growth mechanism in the [100] direction of vanadium pentoxide ID nanostructure under hydrothermal conditions is well described by the oriented attachment (OA) mechanism. This evidence was supported by HRTEM images showing the existence of defects at the interface between nanostructures, which is characteristic of the oriented attachment (OA) mechanism.
机译:这里报道的工作涉及在水热条件下对V_2O_5nH_2O纳米结构的生长动力学的研究。 V_2O_5nH_2O纳米带的粗化过程之后,将制备好的悬浮液在80℃下进行水热处理,时间为0至7200分钟。 X射线衍射(XRD)证实,在80℃的水热处理对经过不同水热处理时间的样品的长程结构没有显着影响。场发射扫描透射电子显微镜(FE-STEM)用于分析纳米结构的形态和宽度分布。结果表明,在水热条件下,五氧化二钒钒ID纳米结构在[100]方向上的晶体生长机理通过定向附着(OA)机理得到了很好的描述。 HRTEM图像支持了这一证据,该图像显示了纳米结构之间的界面处存在缺陷,这是定向附着(OA)机制的特征。

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