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Strong interactions and charge transfers between a charged benzene molecule and multilayer graphenes

机译:带电的苯分子与多层石墨烯之间的强相互作用和电荷转移

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摘要

The interactions between a benzene molecule and multilayer graphenes have been studied in this work using a density-functional tight-binding method. Analysis of structural characteristics, energetics, charge distribution etc., uncovers remarkable charge transfer resulted from a strong interaction between the ionic benzene and neutral multilayer graphene that is not attained for their neutral counterparts, with a clear interesting trend of charge accumulation at the surface region. Moreover, the adsorption energy increases gradually as the increase of the number of graphene layers and the electronic density of states of the multilayer graphene is simply equivalent to the multiple of that of a single layer. The band gap of the multilayer graphene varies with the number of layers, which is not affected by the adsorption of ionic benzene but is altered by the neutral benzene adsorption by 0.05 eV.
机译:在这项工作中,已使用密度泛函紧密结合方法研究了苯分子与多层石墨烯之间的相互作用。通过分析结构特征,能量,电荷分布等,发现离子苯与中性多层石墨烯之间的强相互作用导致了显着的电荷转移,这是中性对应物无法实现的,并且在表面区域有明显有趣的电荷积累趋势。而且,随着石墨烯层数的增加,吸附能逐渐增加,并且多层石墨烯的状态的电子密度简单地等于单层的电子密度。多层石墨烯的带隙随层数而变化,这不受离子苯吸附的影响,但受中性苯吸附0.05 eV的影响而改变。

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