Yoshina Reiji, Hirano Junichiro, Nishimoto Emiko, Sakamoto Yuki, Tajima Keita, Minabe Shunsuke, Uyanik Muhammet, Ishihara Kazuaki, Ikai Tomoyuki, Yashima Eiji, Omine Takuya, Ishiwari Fumitaka, Saeki Akinori, Kim Jinseok, Oh Juwon, Kim Dongho, Liu Guanting, Yasuda Takuma, Shinokubo Hiroshi, Fukui Norihito
Department of Molecular and Macromolecular Chemistry, Graduate School of Engineering, and Integrated Research Consortium on Chemical Science (IRCCS), Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8603, Japan.
PRESTO, Japan Science and Technology Agency (JST), Kawaguchi, Saitama 332-0012, Japan.
J Am Chem Soc. 2024 Oct 30;146(43):29383-29390. doi: 10.1021/jacs.4c07985. Epub 2024 Sep 24.
Figure-eight-shaped nonplanar π-systems adopt distinctive chiral -symmetric structures, which are ideal for realizing efficient circularly polarized luminescence (CPL). However, the short-step and enantioselective synthesis of figure-eight π-systems represents a considerable challenge for the conventional bottom-up synthetic strategy. Herein, we report that the oxidative cleavage of the internal double bond of a commercially available polycyclic aromatic hydrocarbon, i.e., dibenzo[,]chrysene (DBC), catalytically affords a figure-eight electron-accepting macrocycle, i.e., cyclobisbiphenylenecarbonyl (CBBC), with high scalability (up to 3.3 g) and excellent enantioselectivity (94% ee). This inner-bond-cleavage approach also applies to larger PAHs, affording highly distorted molecular frameworks that comprise two figure-eight subunits. Furthermore, we demonstrate that the peripheral functionalization of CBBC with carbazole afforded donor-acceptor-type emitter, which shows thermally activated delayed fluorescence and emits CPL with a value of 1.0 × 10. This value is ten times higher than those of previously reported chiral TADF-active emitters for circularly polarized organic light-emitting diodes. These results demonstrate that oxidative inner-bond cleavage is a powerful synthetic strategy for creating innovative materials that incorporate molecules with figure-eight structures.
8字形非平面π体系具有独特的手性对称结构,非常适合实现高效圆偏振发光(CPL)。然而,8字形π体系的短步骤和对映选择性合成对传统的自下而上合成策略来说是一个巨大的挑战。在此,我们报道,通过催化氧化商业可得的多环芳烃即二苯并[,]屈(DBC)的内双键,可高效制备8字形电子接受大环即环双亚联苯羰基(CBBC),产率高达3.3 g且对映选择性优异(94% ee)。这种内键断裂方法也适用于更大的多环芳烃,可得到高度扭曲的分子骨架,其中包含两个8字形亚基。此外,我们证明用咔唑对CBBC进行外围功能化可得到供体-受体型发光体,其表现出热激活延迟荧光,并发射出glum值为1.0×10的CPL。该glum值比之前报道的用于圆偏振有机发光二极管的手性热激活延迟荧光活性发光体高出十倍。这些结果表明,氧化内键断裂是一种强大的合成策略,可用于制备包含8字形结构分子的创新材料。