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Crystallography at the nanoscale: planar defects in ZnO nanospikes

机译:纳米级晶体学:ZnO纳米钉中的平面缺陷

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摘要

The examination of anisotropic nanostructures, such as wires, platelets or spikes, inside a transmission electron microscope is normally performed only in plan view. However, intrinsic defects such as growth twin interfaces could occasionally be concealed from direct observation for geometric reasons, leading to superposition. This article presents the shadow-focused ion-beam technique to prepare multiple electron-beam-transparent cross-section specimens of ZnO nanospikes, via a procedure which could be readily extended to other anisotropic structures. In contrast with plan-view data of the same nanospikes, here the viewing direction allows the examination of defects without superposition. By this method, the coexistence of two twin configurations inside the wurtzite-type structure is observed, namely and , which were not identified during the plan-view observations owing to superposition of the domains. The defect arrangement could be the result of coalescence twinning of crystalline nuclei formed on the partially molten Zn substrate during the flame-transport synthesis. Three-dimensional defect models of the twin interface structures have been derived and are correlated with the plan-view investigations by simulation.
机译:通常仅在平面图中检查透射电子显微镜内部的各向异性纳米结构,例如导线,薄片或尖峰。但是,由于几何原因,有时可能无法通过直接观察来隐藏诸如生长孪生界面之类的固有缺陷,从而导致重叠。本文介绍了一种聚焦阴影的离子束技术,该方法可通过易于扩展到其他各向异性结构的方法制备多个ZnO纳米钉的电子束透明截面样品。与相同纳米钉的平面图数据相反,此处的观察方向允许检查缺陷而无重叠。通过这种方法,观察到纤锌矿型结构内部的两个孪生构型共存,即和,由于畴的叠加而在平面图观察期间未发现。缺陷排列可能是火焰传输合成过程中在部分熔融的Zn衬底上形成的晶核聚结孪生的结果。导出了双界面结构的三维缺陷模型,并通过仿真将其与平面图研究相关联。

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