Li Yuanming, Segawa Yasutomo, Yagi Akiko, Itami Kenichiro
Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Chikusa, Nagoya 464-8602, Japan.
Graduate School of Science, Nagoya University, Chikusa, Nagoya 464-8602, Japan.
J Am Chem Soc. 2020 Jul 22;142(29):12850-12856. doi: 10.1021/jacs.0c06007. Epub 2020 Jul 9.
The synthesis, structure, and properties of methylene-bridged [6]cycloparaphenylene ([6]CPP), a nonalternant aromatic belt, are described. This belt-shaped methylene-bridged [6]CPP, in which each phenylene unit is tethered to its neighbors by methylene bridges, was constructed through 6-fold intramolecular nickel-mediated aryl-aryl coupling of triflate-functionalized pillar[6]arene in 18% isolated yield. As compared to the analogous [6]CPP, the methylene bridges coplanarize neighboring paraphenylene units and enhance the degree of π-conjugation, which results in a significant decrease in energy gap. Moreover, the incorporation of small molecules in the defined pocket of methylene-bridged [6]CPP makes it an attractive supramolecular architecture. Methylene-bridged [6]CPP is characterized by high internal strain energy reaching 110.2 kcal mol, attributed to its restricted structure. This work not only exhibits an efficient strategy to construct a new family of aromatic belt, but also showcases their properties, which combine the merits of CPPs and pillararenes.
描述了亚甲基桥连的[6]环对亚苯基([6]CPP)这一非交替芳香带的合成、结构和性质。这种带状的亚甲基桥连[6]CPP,其中每个亚苯基单元通过亚甲基桥与相邻单元相连,是通过三氟甲磺酸酯官能化的柱[6]芳烃的6重分子内镍介导的芳基-芳基偶联反应构建而成的,分离产率为18%。与类似的[6]CPP相比,亚甲基桥使相邻的对亚苯基单元共面,并增强了π共轭程度,这导致能隙显著减小。此外,在亚甲基桥连[6]CPP的特定口袋中纳入小分子使其成为一种有吸引力的超分子结构。亚甲基桥连[6]CPP的特征在于其内部应变能高达110.2千卡/摩尔,这归因于其受限的结构。这项工作不仅展示了构建新的芳香带家族的有效策略,还展示了它们结合了环对亚苯基和柱芳烃优点的性质。