Division of Chemistry and Materials Science, Graduate School of Engineering, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki, 852-8521, Japan.
Department of Chemistry and Chemical Biology, TU Dortmund University, Otto-Hahn-Straße 6, 44227, Dortmund, Germany.
Nat Commun. 2023 Jan 11;14(1):155. doi: 10.1038/s41467-023-35850-4.
Bio-inspired self-assembly is invaluable to create well-defined giant structures from small molecular units. Owing to a large entropy loss in the self-assembly process, highly symmetric structures are typically obtained as thermodynamic products while formation of low symmetric assemblies is still challenging. In this study, we report the symmetry-breaking self-assembly of a defined C-symmetric supramolecular structure from an O-symmetric hydrogen-bonded resorcin[4]arene capsule and C-symmetric cationic bis-cyclometalated Ir complexes, carrying sterically demanding tertiary butyl (Bu) groups, on the basis of synergistic effects of weak binding forces. The flexible capsule framework shows a large structural change upon guest binding to form a distorted resorcin[4]arene hexameric capsule, providing an asymmetric cavity. Location of the chiral guest inside the anisotropic environment leads to modulation of its Electric Dipole (ED) and Magnetic Dipole (MD) transition moments in the excited state, causing an increased emission quantum yield, longer emission lifetime, and enhancement of the dissymmetry factor (g) in the circularly polarized luminescence.
受生物启发的自组装对于从小分子单元构建明确定义的巨型结构非常有价值。由于自组装过程中熵的大量损失,高度对称的结构通常作为热力学产物获得,而形成低对称组装仍然具有挑战性。在这项研究中,我们报告了一种定义明确的 C 对称超分子结构的对称破缺自组装,该结构由 O 对称氢键键合的间苯三酚[4]芳烃胶囊和 C 对称阳离子双环金属化 Ir 配合物组成,在弱结合力的协同作用下,配合物带有空间位阻的叔丁基(Bu)基团。柔性胶囊骨架在客体结合时表现出较大的结构变化,形成扭曲的间苯三酚[4]芳烃六聚体胶囊,提供非对称空腔。手性客体在各向异性环境中的位置导致其在激发态下的电偶极(ED)和磁偶极(MD)跃迁矩的调制,从而导致发射量子产率增加、发射寿命延长以及圆偏振发光中的不对称因子(g)增强。