Dong Yanping, Zhang Zhiyu, Hashikawa Yoshifumi, Meng He, Bai Fenghua, Itami Kenichiro
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot, 010021, China.
Institute for Chemical Research, Kyoto University, Uji, Kyoto, 611-0011, Japan.
Angew Chem Int Ed Engl. 2024 Aug 26;63(35):e202406927. doi: 10.1002/anie.202406927. Epub 2024 Jul 16.
The mature synthetic methodologies enable us to rationally design and produce chiral nanographenes (NGs), most of which consist of multiple helical motifs. However, inherent chirality originating from twisted geometry has just emerged to be employed in chiral NGs. Herein, we report a red-emissive chiral NG constituted of orthogonally arranged two-fold twisted π-skeletons at a contorted pyrene core which contributes to optical transitions of S→S and vice versa. The thus-obtained NG exhibited a robustness on its redox properties through 2e uptake/release. The chemical oxidation generated stable radical cation whose absorption covers near-infrared I and II regions. Overall, the contorted pyrene core governs electronic nature of the chiral NG. The twist operation on NGs would be, therefore, a design strategy to alter conventional chirality induction on NGs.
成熟的合成方法使我们能够合理设计和生产手性纳米石墨烯(NGs),其中大多数由多个螺旋基序组成。然而,源自扭曲几何结构的固有手性刚刚开始应用于手性NGs。在此,我们报道了一种红色发光的手性NG,它由在扭曲的芘核处正交排列的双折扭曲π骨架构成,这有助于S→S的光学跃迁,反之亦然。如此获得的NG通过2e的吸收/释放对其氧化还原性质表现出稳健性。化学氧化产生了稳定的自由基阳离子,其吸收覆盖近红外I和II区域。总体而言,扭曲的芘核决定了手性NG的电子性质。因此,对NGs的扭曲操作将是一种改变传统NGs手性诱导的设计策略。