Chen Qiang, Baumgarten Martin, Wagner Manfred, Hu Yunbin, Hou Ian Cheng-Yi, Narita Akimitsu, Müllen Klaus
Synthetic Chemistry, Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.
Current address: Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Oxford, OX1 3TA, UK.
Angew Chem Int Ed Engl. 2021 May 10;60(20):11300-11304. doi: 10.1002/anie.202102932. Epub 2021 Apr 7.
Synthesis of two dicyclopentaannelated hexa-peri-hexabenzocoronene (PHBC) regioisomers was carried out, using nonplanar oligoaryl precursors with fluorenyl groups: mPHBC 8 with two pentagons in the "meta"-configuration was obtained as a stable molecule, while its structural isomer with the "para"-configuration, pPHBC 16, could be generated and characterized only in situ due to its high chemical reactivity. Both PHBCs exhibit low energy gaps, as reflected by UV-vis-NIR absorption and electrochemical measurements. They also show open-shell singlet ground states according to electron paramagnetic resonance (EPR) measurements and density functional theory (DFT) calculations. The use of fully benzenoid HBC as a bridging moiety leads to significant singlet biradical characters (y ) of 0.72 and 0.96 for mPHBC 8 and pPHBC 16, respectively, due to the strong rearomatization tendency of the HBC π-system; these values are among the highest for planar carbon-centered biradical molecules. The incorporation of fully unsaturated pentagons strongly perturbs the aromaticity of the parent HBC and makes the constituted benzene rings less aromatic or antiaromatic. These results illustrate the high impact of cyclopentaannelation on the electronic structures of fully benzenoid polycyclic aromatic hydrocarbons (PAHs) and open up a new avenue towards open-shell PAHs with prominent singlet biradical characters.
利用含芴基的非平面寡芳基前体,合成了两种双环戊并稠合的六并六苯并蔻(PHBC)区域异构体:得到了具有“间位”构型且含有两个五边形的mPHBC 8,它是一种稳定分子,而其具有“对位”构型的结构异构体pPHBC 16,由于其高化学反应活性,只能原位生成并表征。紫外-可见-近红外吸收和电化学测量结果表明,两种PHBC均具有低能隙。根据电子顺磁共振(EPR)测量和密度泛函理论(DFT)计算,它们还表现出开壳单重基态。由于HBC π体系强烈的再芳构化趋势,使用全苯型HBC作为桥连部分分别导致mPHBC 8和pPHBC 16的单重双自由基特征(y)显著,分别为0.72和0.96;这些值在平面碳中心双自由基分子中是最高的。完全不饱和五边形的并入强烈扰乱了母体HBC的芳香性,使构成的苯环芳香性降低或具有反芳香性。这些结果说明了环戊并稠合对全苯型多环芳烃(PAHs)电子结构的高度影响,并为具有突出单重双自由基特征的开壳PAHs开辟了一条新途径。