Suzuki Komari, Asai Daisuke, Herman Robert J, Njoroge Sheila W, Yoshida Satoshi, Sato Sota, Lee Semin, Tahara Kazukuni
Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku, Kawasaki, Kanagawa, 214-8571, Japan.
Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana, 70803, USA.
Chem Asian J. 2025 Sep;20(18):e00754. doi: 10.1002/asia.202500754. Epub 2025 Jun 27.
In this work we report the synthesis, structure, and electronic properties of carbon-rich compounds dehydrobiphenyleno[12]annulenes (DBP[12]As) comprising antiaromatic four-membered rings (4MR) and 12-membered ring (12MR). Ultraviolet-visible absorption spectra and electrochemical behaviors of DBP[12]As confirmed their relatively narrow highest occupied molecular orbital (HOMO)-lowest unoccupied molecular orbital (LUMO) gap values and high HOMO energy levels, which were supported by density functional theory simulations. Parent DBP[12]A adopts a slipped herringbone structure in a crystalline state, with the molecules forming 1D stacks via π-π interactions. The experimentally derived bond lengths, bonding analyses using the Wiberg bond indices, and localized orbital locator calculation support a stronger double bond character for the 12MR bonds than the 4MR bonds in the inner six-membered ring. The chemical shifts of hydrogens in H NMR spectra, as well as magnetically induced ring current analyses using quantum chemical calculations, indicate that the 4MRs have stronger antiaromatic character than the 12MR. The present information is useful for a fundamental understanding of carbon-rich compounds with different antiaromatic units as well as designing novel molecules with unique electronic properties.
在本工作中,我们报道了富含碳的化合物脱氢联苯并[12]轮烯(DBP[12]As)的合成、结构和电子性质,该化合物包含反芳香性的四元环(4MR)和十二元环(12MR)。DBP[12]As的紫外可见吸收光谱和电化学行为证实了其相对较窄的最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)能隙值和较高的HOMO能级,这得到了密度泛函理论模拟的支持。母体DBP[12]A在晶体状态下采用滑移人字结构,分子通过π-π相互作用形成一维堆积。实验得出的键长、使用维伯格键指数的键合分析以及定域轨道定位器计算表明,十二元环键的双键特征比内六元环中的四元环键更强。氢核磁共振谱中氢的化学位移以及使用量子化学计算的磁诱导环电流分析表明,四元环比十二元环具有更强的反芳香性。目前的信息有助于从根本上理解具有不同反芳香单元的富含碳的化合物,以及设计具有独特电子性质的新型分子。