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Preparation Characterization and Performance Control of Nanographitic Films

机译:纳米石墨膜的制备表征和性能控制

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摘要

Using methane as a carbon source, low-dimensional carbon nanomaterials were obtained in this work. The films were deposited directly on glass substrates by radio frequency plasma-enhanced chemical vapor deposition (RF-PECVD). The configuration and compositions of this nanographite films were identified by X-ray photoelectron spectroscopy (XPS) as carbon in sp2 bonding form. Raman spectral characterization verified the configuration of the films to be hexatomic ring of carbon atoms. As a result, they were found to be nanographite films (NGFs). Also, the atomic force microscopy (AFM) topography and Raman spectra of different areas demonstrated the diversity of the films at the nano scale. The high light-transmitting and electron mobility indicated that the NGFs possessed excellent optic-electronic properties and could be used as good photoelectrical function materials. Furthermore, the physical and chemical growth mechanism of NGFs were analyzed by PECVD. NGFs could be obtained in a controlled process by modulating the growth conditions. In this work, the complicated transfer process commonly used for optoelectronic devices could be avoided. Also, by growing the films directly on a glass substrate, the quality degradation of the film was not a problem. This work can further promote the development of next-generation electronic or optoelectronic function materials, especially for their application in transparent conductive electrode fields.
机译:使用甲烷作为碳源,在这项工作中获得了低维碳纳米材料。通过射频等离子体增强化学气相沉积(RF-PECVD)将薄膜直接沉积在玻璃基板上。通过X射线光电子能谱(XPS)鉴定该纳米石墨薄膜的构型和组成为sp 2 键形式的碳。拉曼光谱表征证实了膜的构型为碳原子的六原子环。结果,发现它们是纳米石墨膜(NGF)。同样,原子力显微镜(AFM)的形貌和不同区域的拉曼光谱证明了薄膜在纳米尺度上的多样性。高透光率和电子迁移率表明,NGF具有优异的光电性能,可作为良好的光电功能材料。此外,通过PECVD分析了NGF的物理和化学生长机理。通过调节生长条件,可以在受控过程中获得NGF。在这项工作中,可以避免通常用于光电设备的复杂传输过程。另外,通过直接在玻璃基板上生长膜,膜的质量下降也不是问题。这项工作可以进一步促进下一代电子或光电功能材料的开发,尤其是在透明导电电极领域中的应用。

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