抗芳香性
化学
环烯
芳香性
环戊烯酮
计算化学
化学位移
密度泛函理论
氧化还原
群(周期表)
戒指(化学)
分子
碳纤维
自然密度
光化学
立体化学
作者
Yann Lie,Glib Baryshnikov,Michael Pittelkow
摘要
Cyclocarbons make up an emerging family of carbon allotropes, but their instability precludes the study of their physicochemical properties. We report a synthetic route to cyclopentenone-annulated [18]- and [24]dehydroannulenes that are stable aromatic and antiaromatic models of cyclocarbon precursors. Combining NMR spectroscopy, X-ray crystallography, optical spectroscopy, electrochemistry, spectroelectrochemistry, and density functional theory (DFT) calculations, we address the aromatic and antiaromatic behavior of these electron-accepting molecules. Cyclopenteno[24]dehydroannulenes undergo two-electron reductions to form Hückel-aromatic 26 π-electron dianions with significant planarization. Replacing cyclopentenone corners with more electron-withdrawing cyclopentenediones lowers the reduction potentials, thereby enhancing the redox activity. Cyclopenteno[18/24]dehydroannulenes are designed so that each cyclopentenone corner bears a dimethylacetal group on the central carbonyl moiety. The chemical shift of the methyl groups acts as a probe for the aromaticity and antiaromaticity of the annulene system, confirming the diatropicity and paratropicity of the π-conjugated system. The combination of structural control and electroactivity makes these scaffolds promising candidates for organic electronics and topochemical polymerization.
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