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Exploring oxygen in graphene chemical vapor deposition synthesis

机译:探索在石墨烯化学气氧沉积合成

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Graphene's practical applications require its reproducible production with controlled means. In particular, graphene synthesis by chemical vapor deposition on metals has been shown to be a promising way to produce large-size and high-quality graphene film at low cost. Understanding the reaction mechanisms during the synthesis process is vital for process and product controllability. There have been a great deal of studies regarding the mutual interplays between the metal, graphene, and hydrogen in graphene production, leading to significant advances in controllable graphene synthesis. Recently, oxygen has been found to play a key role in each step of graphene synthesis, especially on Cu. Taking oxygen into consideration, one can explain the divergent experimental results under similar conditions reported before and can grasp it as another powerful tool that can help to regulate the synthesis processes. The primary discoveries of the function of oxygen in graphene synthesis are summarized and discussed herein, divided into four aspects, corresponding to the elementary steps in graphene synthesis. Oxygen may also further promote graphene synthesis toward the final goal of developing wafer-scale single crystals with definite layer numbers and defects.
机译:石墨烯的实际应用要求可再生的生产与控制手段。通过化学气,特别是石墨烯合成沉积在金属已被证明是一个生产大型和有前途的方法以低成本高质量的石墨烯薄膜。在理解的反应机制对过程和合成过程是至关重要的产品的可控制性。研究关于相互相互交错之间的金属、石墨烯和氢石墨烯生产,导致重大的先进的可控石墨烯合成。最近,氧气可以扮演一个关键石墨烯合成的每一步,特别是在铜。考虑,一个人可以解释不同在类似条件下的实验结果报道前和可以作为另一个掌握强大的工具,可以帮助调节合成过程。氧气在石墨烯合成的功能总结和讨论,分成四个方面,基本对应石墨烯合成的步骤。进一步促进石墨烯合成的发展中圆片规模单一的最终目标晶体与明确的层数和缺陷。

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