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Fullerene-like chemistry at the interior carbon atoms of an alkene-centered C26H12 geodesic polyarene

机译:在以烯烃为中心的C26H12测地线聚芳烃的内部碳原子上的富勒烯状化学

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[GRAPHICS] The title compound (1) undergoes 1,2-addition reactions of both electrophilic and nucleophilic reagents preferentially at the "interior" carbon atoms of the central 6:6-bond to give fullerene-type adducts 2, 3, 4, and 5. Such fullerene-like chemistry is unprecedented for a topologically 2-dimensional polycyclic aromatic hydrocarbon and qualifies this geodesic polyarene as a "bridge" between the old flat world of polycyclic aromatic hydrocarbons (PAHs) and the new round world of fullerenes. The relief of pyramidalization strain, as in the addition reactions of fullerenes, presumably contributes to the atypical mode of reactivity seen in 1. Molecular orbital calculations, however, reveal features of the nonalternant,7 system in I that may also play an important role. Thus, the fullerene-like chemistry of I may be driven by two or more factors, the relative importances of which are difficult to discern.
机译:[标题]标题化合物(1)优选在中心6:6-键的“内部”碳原子上进行亲电子试剂和亲核试剂的1,2-加成反应,得到富勒烯型加合物2、3、4 5.对于类似的二维富集多环芳烃来说,这种类富勒烯化学是前所未有的,并且使该测地线聚芳烃成为多环芳烃(PAHs)的旧平坦世界与富勒烯新一轮世界之间的“桥梁”。像富勒烯的加成反应一样,锥体化应力的减轻可能有助于图1中所示的非典型反应性模式。然而,分子轨道计算揭示了I中非交替7体系的特征,这也可能起重要作用。因此,I的富勒烯状化学可能受两个或两个以上因素的驱动,这两个因素的相对重要性难以辨认。

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