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Nano-Graphitization in Amorphous Carbon Films via Electron Beam Irradiation and the Iron Implantation

机译:通过电子束照射和铁植入非晶碳膜纳米石墨化

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Nano-graphitization from amorphous carbon state is assisted by the electron beam irradiation. An inter-columnar region in the amorphous carbon films with low atomic and electron densities is controlled to have a graphitic structure by relatively low dose electron beam irradiation. This amorphous carbon - beam interaction generates a new type of carbon hybrids where the graphitic inter-columnar network is embedded into amorphous carbon columns. This hybrid film has an exotic mechanical and tribological response: extraordinary reversible deformability up to 8-10% in normal strain, high wearing resistance and low friction at high normal pressure. A combination of iron-ion implantation with this electron irradiation provides us the other method of nano-graphitization process. An amorphous carbon film including the implanted iron atoms is chemically modified to have a columnar graphitic structure by the electron beam irradiation. In this post-implantation electron beam irradiation, the basic graphitic units with 1-2nm in size are controlled to align vertically along the film thickness. This type of nano-graphitization has a strong dependency on the iron doses before electron beam irradiation. The above two types of nano-graphitization provides us a new tool to explore the functionalized structural thin films in application.
机译:通过电子束辐射辅助来自非晶碳状态的纳米石墨化。控制具有低原子和电子密度的无定形碳膜中的柱状区域以具有相对低剂量的电子束照射具有石墨结构。这种无定形的碳束相互作用产生了一种新型碳杂交体,其中石墨柱间网络嵌入无定形碳柱中。这种混合膜具有异国情调的机械和摩擦响应:正常的可逆变形性高达8-10%,在正常应变,高耐磨性和高常压下的低摩擦力。使用该电子照射的铁离子注入的组合为我们提供了另一种纳米石墨化方法的方法。包括植入铁原子的非晶碳膜在化学修饰中以通过电子束照射具有柱状石墨结构。在该植入后电子束照射中,控制具有1-2nm的基本石墨单元沿膜厚度垂直对准。这种类型的纳米石墨化在电子束照射之前对铁剂量具有很强的依赖性。上述两种类型的纳米图形化为我们提供了一种探索应用中官能化结构薄膜的新工具。

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