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π-扩展和弯曲的反芳香多环烃。

π-Extended and Curved Antiaromatic Polycyclic Hydrocarbons.

机构信息

Max-Planck Institut für Polymerforschung , Ackermannweg 10, 55128 Mainz, Germany.

Leibniz Institute for Solid State and Materials Research , 01069 Dresden, Germany.

出版信息

J Am Chem Soc. 2017 Jun 7;139(22):7513-7521. doi: 10.1021/jacs.7b01619. Epub 2017 May 24.

Abstract

Synthesis of antiaromatic polycyclic hydrocarbons (PHs) is challenging because the high energy of their highest occupied molecular orbital and low energy of their lowest unoccupied molecular orbital cause them to be reactive and unstable. In this work, two large antiaromatic acene analogues, namely, cyclopenta[pqr]indeno[2,1,7-ijk]tetraphene (CIT, 1a) and cyclopenta[pqr]indeno[7,1,2-cde]picene (CIP, 1b), as well as a curved antiaromatic molecule with 48 π-electrons, dibenzo[a,c]diindeno[7,1,2-fgh:7',1',2'-mno]phenanthro[9,10-k]tetraphene (DPT, 1c), are synthesized on the basis of the corona of indeno[1,2-b]fluorene. These three antiaromatic PHs possess a narrow energy gap down to 1.55 eV and exhibit high kinetic stability under ambient conditions. Moreover, these compounds display reversible electron transfer processes in both the cathodic and anodic regimes. Their cation and anion radicals are characterized by in situ vis-NIR absorption and electron paramagnetic resonance spectroelectrochemistry. The X-ray crystallographic analysis confirms that while CIP and CIT manifest planar structures, DPT shows a curved π-conjugated carbon skeleton. The synthetic strategy starting from ortho-substituted benzene units to construct five-membered rings in this work provides a unique entry to novel pentagon-embedding or curved antiaromatic polycyclic hydrocarbons. In addition, besides the detailed chemical and physical investigations, microscale single-crystal fiber field-effect transistors were also fabricated.

摘要

合成反芳香多环烃(PHs)具有挑战性,因为其最高占据分子轨道的高能量和最低未占据分子轨道的低能量使它们具有反应性和不稳定性。在这项工作中,合成了两个大的反芳香并五苯类似物,即环戊[pqr]茚并[2,1,7-ijk]四苯(CIT,1a)和环戊[pqr]茚并[7,1,2-cde]并五苯(CIP,1b),以及一个具有 48π电子的弯曲反芳香分子二苯并[a,c]二茚并[7,1,2-fgh:7',1',2'-mno]菲咯并[9,10-k]四苯(DPT,1c),它们都是基于茚并[1,2-b]芴的冠醚合成的。这三种反芳香 PHs 具有低至 1.55eV 的窄能隙,并在环境条件下表现出高动力学稳定性。此外,这些化合物在阴极和阳极区都表现出可逆的电子转移过程。它们的阳离子和阴离子自由基通过原位可见-近红外吸收和电子顺磁共振谱电化学进行了表征。X 射线晶体学分析证实,CIP 和 CIT 表现出平面结构,而 DPT 则显示出弯曲的π共轭碳骨架。本工作中从邻位取代苯单元出发构建五元环的合成策略为新型五边形嵌入或弯曲的反芳香多环烃提供了独特的入口。此外,除了详细的化学和物理研究外,还制备了微尺度单晶纤维场效应晶体管。

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