Ye Liping, Hu Chenyu, Yang Daiyue, Zhang Li, Chen Xiao, Qiao Lulin, Huang Zhifeng, Yang Jun, Miao Qian
Department of Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.
Department of Chemistry, The University of Hong Kong, Hong Kong, China.
J Am Chem Soc. 2025 May 28;147(21):17795-17803. doi: 10.1021/jacs.5c01323. Epub 2025 May 16.
A novel writhed Möbius nanobelt was synthesized using a helical building block derived from [7]helicene and a C-shaped building block derived from pyrene. These two building blocks were connected through nucleophilic aromatic substitution to form an oxanorbornene-containing macrocycle, which was then converted to the nanobelt by reductive aromatization and subsequent oxidation. The structure of the Möbius nanobelt was confirmed with X-ray crystallography. Both the nanobelt and its macrocyclic precursor exhibit symmetry, but this symmetry is only reflected by the H NMR signals for the tetra(4--butylphenyl)dinaphthopyrene moiety in the nanobelt, not in its precursor. This difference is attributed to the distinct arrangements of the pendent 4--butylphenyl groups, caused by the crowdedness and restricted rotation of the C-C single bonds in the nanobelt. Theoretical calculations suggest that the nanobelt does not exhibit global ring currents but has localized aromatic ring currents. Additionally, when an enantiopure form of the [7]helicene derivative was used, the nanobelt was obtained in an enantiopure form, showing an absorption dissymmetry factor of 4 × 10.
使用源自[7]螺旋烯的螺旋结构单元和源自芘的C形结构单元合成了一种新型扭曲莫比乌斯纳米带。这两个结构单元通过亲核芳香取代反应连接形成含氧杂降冰片烯的大环,然后通过还原芳构化和随后的氧化反应转化为纳米带。通过X射线晶体学确定了莫比乌斯纳米带的结构。纳米带及其大环前体均表现出对称性,但这种对称性仅在纳米带中四(4-叔丁基苯基)二萘并芘部分的1H NMR信号中体现,而在其前体中则没有。这种差异归因于纳米带中C-C单键的拥挤和受限旋转导致的侧链4-叔丁基苯基基团排列不同。理论计算表明,纳米带不表现出整体环电流,但具有局域芳香环电流。此外,当使用对映体纯形式的[7]螺旋烯衍生物时,得到了对映体纯形式的纳米带,其吸收不对称因子为4×10-3。