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Methylbenzenes on graphene

机译:石墨烯上的甲基苯

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We present a theory study of the physisorption of the series of methylbenzenes (toluene, xylene and mesitylene), as well as benzene, on graphene. The aim is two fold: we provide data that will be used as input to larger scale methods like molecular-dynamics simulations, and at the same time we enhance the basic understanding of graphene used as a material for sensors and as an idealized model for the carbon in active carbon filters. The molecules are studied in a number of positions and orientations relative to graphene, using density functional theory with the van der Waals functional vdW-DF. The molecules are adsorbed fractional coverage. We focus on the vdW-DF1 and vdW-DF-cx functionals, and find that the binding energy of the molecules on graphene grows linearly with the number of methyl groups, at the rate of 0.09 eV (vdW-DF1) to 0.11 eV (vdW-DF-cx) per added methyl group. We further find that the orientation of the methyl groups of the molecules relative to graphene is at least as important as the lateral position of the whole molecule on graphene. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们目前对一系列甲基苯(甲苯,二甲苯和均三甲苯)以及苯在石墨烯上的物理吸附进行理论研究。目的有两个方面:我们提供的数据将用作更大规模方法(例如分子动力学模拟)的输入,同时我们增强对石墨烯作为传感器材料和理想材料模型的基本了解。活性炭过滤器中的碳。使用具有范德华功能的vdW-DF的密度泛函理论,在相对于石墨烯的许多位置和方向上研究了分子。分子被吸附部分覆盖。我们关注vdW-DF1和vdW-DF-cx的功能,发现石墨烯上分子的结合能随甲基数量的增加而线性增长,比率为0.09 eV(vdW-DF1)至0.11 eV( vdW-DF-cx)每个添加的甲基。我们进一步发现,分子相对于石墨烯的甲基的取向至少与整个分子在石墨烯上的侧向位置一样重要。 (C)2017 Elsevier B.V.保留所有权利。

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