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Heterogeneous diamond phases in compressed graphite studied by electron energy-loss spectroscopy

机译:通过电子能损光谱研究的压缩石墨中的异质金刚石相

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Chemical mapping imaged by electron energy-loss spectroscopy based on scanning transmission electron microscopy was conducted on a compressed graphite specimen containing different carbon allotropes (hexagonal diamond, cubic diamond, and graphite phases). This imaging process allows visualization of the complex spatial distribution of different diamond phases, and their coexistence was confirmed using dark field (DF) imaging. The chemical mapping images showed spatial distribution of local bonding state for hexagonal and cubic diamond phases in the whole specimen, while the DF images showed only a part of crystalline segments with long-range order. Thus, the chemical mapping method has an advantage for the purpose of observing locally the existence of individual carbon allotropes in the whole specimen. The size distribution of the hexagonal diamond phase is approximately 10-100 nm. These findings indicate that the compressing method can potentially synthesize similar to 100 nm large diamond phases. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于扫描透射电子显微镜通过电子能损光谱成像的化学映射在含有不同碳异滴(六边形金刚石,立方体和石墨阶段)的压缩石墨试样上进行。该成像过程允许可视化不同金刚石阶段的复杂空间分布,并且使用暗场(DF)成像确认了它们的共存。化学映射图像显示了整个样本中六边形和立方体金刚石相的局部键合状态的空间分布,而DF图像仅显示了具有远程顺序的晶体段的一部分。因此,化学映射方法具有局部地观察整个样本中单个碳异滴的存在的优点。六边形金刚石阶段的尺寸分布约为10-100nm。这些发现表明,压缩方法可以潜在地合成类似于100nm的大型金刚石相。 (c)2016年Elsevier B.v.保留所有权利。

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