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The Structure and Stability of Magic Carbon Clusters Observed in Graphene Chemical Vapor Deposition Growth on Ru(0001) and Rh(111) Surfaces

机译:在Ru(0001)和Rh(111)表面上石墨烯化学气相沉积生长中观察到的魔碳簇的结构和稳定性。

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摘要

To improve the atomically controlled growth of graphene by chemical vapor deposition (CVD), understanding the evolution from various carbon species to a graphene nucleus on various catalyst surfaces is essential. Experimentally, an ultrastable carbon cluster on Ru(0001) and Rh(111) surfaces was observed, while its structure and formation process were still under debate. Using ab initio calculations and kinetic analyses, we disclose a specific type of carbon cluster, composed of a C-21 core and a few dangling C atoms, which is exceptional stable in a size range from 21 to 27 C atoms. The most stable one of them, an isomer of C-24 characterized by three dangling C atoms attached to the C-21 core (denoted as C-21-3C), is the most promising candidate of the experimental observation. The ultrastability of C-21-3C originates from both the stable core and the appropriate passivation of the dangling carbon atoms by the catalyst surface.
机译:为了通过化学气相沉积(CVD)改善石墨烯的原子控制生长,必须了解从各种碳物质到各种催化剂表面上的石墨烯核的演变。实验上,观察到Ru(0001)和Rh(111)表面上的超稳定碳簇,但其结构和形成过程仍在争论中。使用从头算和动力学分析,我们揭示了一种特定类型的碳簇,该碳簇由C-21核和几个悬挂的C原子组成,在21至27个C原子的范围内异常稳定。其中最稳定的一种是C-24的异构体,其特征是三个悬挂在C-21核上的悬空C原子(表示为C-21-3C),是实验观察的最有希望的候选者。 C-21-3C的超稳定性既来自稳定的核,也来自悬垂的碳原子被催化剂表面适当钝化。

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  • 作者

    Gao, JF; Ding, F;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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