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Methyl radical addition to the surface of graphene nanoflakes: A density functional theory study

机译:石墨烯纳米薄片表面的甲基加成:密度泛函理论研究

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The interaction and reaction of methyl radical (CH3) with polycyclic aromatic hydrocarbons (PAHs) have been investigated by means of density functional theory (DFT) to systematically elucidate the binding nature of CH3to graphene nanoflakes. PAHs withn = 4–37, wherenindicates the number of benzene rings, were chosen as graphene nanoflakes. The activation energies for the addition of CH3to the graphene surface were found to be almost constant, with values in the range 13.0–15.0 kcal/mol at the CAM-B3LYP/6-311G(d,p) level, for all PAHs. The binding energies between CH3and the graphene surfaces were slightly dependent on the size (n): 1.0–4.2 kcal/mol. The absorption spectra showed that a long tail is generated in the low-energy region after CH3addition to the graphene surfaces. The electronic states of the CH3-added graphenes were discussed on the basis of theoretical results.
机译:已通过密度泛函理论(DFT)研究了甲基(CH3)与多环芳烃(PAHs)的相互作用和反应,以系统地阐明CH3与石墨烯纳米薄片的结合性质。选择n == 4-37的PAH(其中表示苯环的数量)作为石墨烯纳米薄片。已发现,对于所有PAH,在石墨烯表面添加CH3的活化能几乎恒定,在CAM-B3LYP / 6-311G(d,p)的水平范围内,其值为13.0–15.0 kcal / mol。 CH3和石墨烯表面之间的结合能在一定程度上取决于大小(n):1.0–4.2 kcal / mol。吸收光谱表明,将CH 3加入石墨烯表面后,在低能区域产生了一条长尾巴。在理论结果的基础上讨论了CH3加成石墨烯的电子态。

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