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Microstructure change of vanadium clusters in ZnO crystalline films by heat-treatment

机译:热处理后ZnO晶体薄膜中钒团簇的微观结构变化

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摘要

Vanadium clusters with a size of several nanometres can be dispersively distributed in ZnO films by using co-deposition. EELS mapping of V-L_(2,3), HRTEM images, SAD patterns and EELS are a good combination for characterizing nanometre-sized V clusters embedded in a ZnO system. There is no obvious orientation relationship between V and ZnO lattices due to a less good match between ZnO and V atomic planes. The ratio of the vanadium L-white lines of vanadium clusters embedded in ZnO becomes bigger than that of the bulk. The samples were observed in situ from 298 to 923 K with a heating holder so as to study the aggregation process of vanadium clusters in the ZnO crystalline matrix. First, the size of the ZnO crystal grains becomes bigger after the sample is heated at 623 K for an hour; second, the size of ZnO and vanadium particles grows bigger after the sample is heated at 723 K for half an hour, and another orientation relationship between ZnO and vanadium appears; third, after the sample is heated at 873 K for half an hour, the size of vanadium becomes smaller, while V particles and ZnO begin to react and form another phase; finally, Zn_2VO_7 phase is formed after the sample is heated at 923 K for half an hour.
机译:通过共沉积,可以将大小为几纳米的钒簇分散在ZnO薄膜中。 V-L_(2,3),HRTEM图像,SAD模式和EELS的EELS映射是表征嵌入ZnO系统的纳米级V团簇的良好组合。由于ZnO和V原子平面之间的匹配度较低,因此V和ZnO晶格之间没有明显的取向关系。嵌入到ZnO中的钒簇的钒L-白线的比例变得大于块体的比例。用加热座在298至923 K范围内原位观察样品,以研究ZnO晶体基质中钒簇的聚集过程。首先,将样品在623 K加热一个小时后,ZnO晶粒的尺寸变大;其次,样品在723 K加热半小时后,ZnO和钒颗粒的尺寸变大,并且ZnO和钒之间出现另一种取向关系。第三,将样品在873 K加热半小时后,钒的尺寸变小,而V粒子与ZnO开始反应并形成另一相。最后,在923 K下加热半小时后,形成Zn_2VO_7相。

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