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Molecular design of functionalized fullerenes and graphenes: Density functional theory (DFT) study

机译:官能化富勒烯和石墨烯的分子设计:密度泛函理论(DFT)研究

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摘要

Functionalized fullerene and graphene are known as high-performance molecular devices. In the present study, the structures and electronic states of the alkyl radical functionalized graphene (GR) and fullerenes (C60) have been investigated by means of density functional theory (DFT) method to elucidate the effects of functionalization on the electronic states of carbon materials. Also, the reaction mechanism of alkyl radical with C60 (or GR) was investigated. The methyl, ethyl, propyl and butyl radicals (denoted by n=1-4, where n means number of carbon atoms in alkyl radical) were examined as alkyl radicals. The DFT calculation showed that the alkyl radical binds to the carbon atom of C60 in the on-top site, and a strong C-C single bond was formed. The binding energies of alkyl radicals to C60 were distributed in the ranges 31.8-35.1 kcal/mol at the CAM-B3LYP/6-311G(d,p) level. It was found that the activation barrier exists before the alkyl addition: the barrier heights were calculated to be 2.1-2.8 kcal/mol.
机译:功能化的富勒烯和石墨烯被称为高性能分子器件。在本研究中,已通过密度泛函理论(DFT)方法研究了烷基自由基官能化石墨烯(GR)和富勒烯(C60)的结构和电子态,以阐明官能化对碳材料电子态的影响。此外,还研究了烷基与C60(或GR)的反应机理。将甲基,乙基,丙基和丁基基团(表示为n = 1-4,其中n表示烷基中碳原子数)作为烷基基团。 DFT计算表明,烷基在顶部位点与C60的碳原子结合,并形成强C-C单键。在CAM-B3LYP / 6-311G(d,p)水平下,烷基与C60的结合能分布在31.8-35.1 kcal / mol的范围内。发现在烷基加成之前存在活化势垒:势垒高度经计算为2.1-2.8kcal / mol。

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