Shen Pingchuan, Jiao Shaoshao, Zhuang Zeyan, Dong Xiaobin, Song Shaoxin, Li Jinshi, Tang Ben Zhong, Zhao Zujin
State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates, South China University of Technology, Guangzhou, 510640, China.
School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Nanyang, 637371, Singapore.
Angew Chem Int Ed Engl. 2024 Aug 5;63(32):e202407605. doi: 10.1002/anie.202407605. Epub 2024 Jun 12.
Organic materials with switchable dual circularly polarized luminescence (CPL) are highly desired because they can not only directly radiate tunable circularly polarized light themselves but also induce CPL for guests by providing a chiral environment in self-assembled structures or serving as the hosts for energy transfer systems. However, most organic molecules only exhibit single CPL and it remains challenging to develop organic molecules with dual CPL. Herein, novel through-space conjugated chiral foldamers are constructed by attaching two biphenyl arms to the 9,10-positions of phenanthrene, and switchable dual CPL with opposite signs at different emission wavelengths are successfully realized in the foldamers containing high-polarizability substitutes (cyano, methylthiol and methylsulfonyl). The combined experimental and computational results demonstrate that the intramolecular through-space conjugation has significant contributions to stabilizing the folded conformations. Upon photoexcitation in high-polar solvents, strong interactions between the biphenyl arms substituted with cyano, methylthio or methylsulfonyl and the polar environment induce conformation transformation for the foldamers, resulting in two transformable secondary structures of opposite chirality, accounting for the dual CPL with opposite signs. These findings highlight the important influence of the secondary structures on the chiroptical property of the foldamers and pave a new avenue towards efficient and tunable dual CPL materials.
具有可切换双圆偏振发光(CPL)的有机材料备受青睐,因为它们不仅可以自身直接辐射可调谐圆偏振光,还能通过在自组装结构中提供手性环境或作为能量转移系统的主体来诱导客体产生CPL。然而,大多数有机分子仅表现出单一CPL,开发具有双CPL的有机分子仍然具有挑战性。在此,通过将两个联苯臂连接到菲的9,10位构建了新型的空间共轭手性折叠体,并且在含有高极化率取代基(氰基、甲硫基和甲磺酰基)的折叠体中成功实现了在不同发射波长下具有相反符号的可切换双CPL。实验和计算结果相结合表明,分子内空间共轭对稳定折叠构象有显著贡献。在高极性溶剂中光激发时,被氰基、甲硫基或甲磺酰基取代的联苯臂与极性环境之间的强相互作用诱导折叠体发生构象转变,产生两种具有相反手性的可转变二级结构,这解释了具有相反符号的双CPL。这些发现突出了二级结构对折叠体手性光学性质的重要影响,并为高效且可调谐的双CPL材料开辟了一条新途径。