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Chemistry at the interior atoms of polycyclic aromatic hydrocarbons

机译:多环芳烃内部原子上的化学

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摘要

For more than 150 years, chemical reactions that make new covalent bonds to polycyclic aromatic hydrocarbons (PAHs) have been confined almost exclusively to substitution and addition reactions on the perimeters of the compounds ("edge chemistry"). The "interior" atoms of PAHs, those belonging to three rings, almost never engage in new sigma-bond-forming reactions. A compound with no edges, C-60, was the first polycyclic carbon pi-system observed to exhibit such reactivity. More recently, smaller subunits of C-60, which we call geodesic polyarenes, have also been found to exhibit "fullerene-type chemistry" at their interior carbon atoms. These reactions are all reviewed together here for the first time. The review ends with speculation that s-bond-forming reactions may also be observed someday even in certain planar, benzenoid PAHs, although no examples have yet been reported.
机译:150多年来,与多环芳烃(PAH)形成新的共价键的化学反应几乎仅限于化合物周边的取代和加成反应(“边缘化学”)。 PAH的“内部”原子(属于三个环)几乎从未参与新的sigma键形成反应。没有边缘的化合物C-60是第一个观察到的具有这种反应性的多环碳π系统。最近,还发现C-60较小的亚基(我们称为测地线聚芳烃)在其内部碳原子上表现出“富勒烯型化学”。这些反应在这里是第一次一起审查。审查结束时推测,即使在某些平面的,类苯甲酰PAH中,也有可能在某天观察到S键形成反应,尽管尚未有实例报道。

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