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Graphene to graphane: a theoretical study

机译:石墨烯至石墨烷的理论研究

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Graphane is a two-dimensional system consisting of a single layer of fully saturated (sp(3) hybridization) carbon atoms. In an ideal graphane structure C-H bonds exhibit an alternating pattern (up and down with relation to the plane defined by the carbon atoms). In this work we have investigated, using ab initio and reactive molecular dynamics simulations, the role of H frustration (breaking the H atoms' up and down alternating pattern) in graphane-like structures. Our results show that a significant percentage of uncorrelated H frustrated domains are formed in the early stages of the hydrogenation process leading to membrane shrinkage and extensive membrane corrugations. These results also suggest that large domains of perfect graphane-like structures are unlikely to be formed, as H frustrated domains are always present.
机译:石墨烷是一个二维系统,由单层完全饱和的(sp(3)杂交)碳原子组成。在理想的石墨烷结构中,C-H键表现出交替的模式(相对于由碳原子定义的平面上下)。在这项工作中,我们使用从头算和反应性分子动力学模拟研究了H挫折(破坏H原子的上下交替模式)在石墨烷状结构中的作用。我们的结果表明,在氢化过程的早期,形成了很大比例的不相关的H挫折结构域,从而导致膜收缩和广泛的膜波纹。这些结果还表明,由于总是存在H挫折结构域,因此不太可能形成完美的石墨烷状结构的大结构域。

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