Xu Wei-Tao, Peng Zhiyong, Wu Peicong, Jiang Yefei, Li Wei-Jian, Wang Xu-Qing, Chen Jinquan, Yang Hai-Bo, Wang Wei
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, State Key Laboratory of Petroleum Molecular and Process Engineering (SKLPMPE), School of Chemistry and Molecular Engineering, East China Normal University 3663 N. Zhongshan Road Shanghai 200062 China
State Key Laboratory of Precision Spectroscopy, School of Physics and Electronic Science, East China Normal University Dongchuan Road 500 Shanghai 200241 China.
Chem Sci. 2024 Apr 11;15(19):7178-7186. doi: 10.1039/d4sc00650j. eCollection 2024 May 15.
In order to investigate the effect of macrocyclization and catenation on the regulation of vibration-induced emission (VIE), the typical VIE luminogen 9,14-diphenyl-9,14-dihydrodibenzo[a, c]phenazine (DPAC) was introduced into the skeleton of a macrocycle and corresponding [2]catenane to evaluate their dynamic relaxation processes. As investigated in detail by femtosecond transient absorption (TA) spectra, the resultant VIE systems revealed precisely tunable emissions upon changing the solvent viscosity, highlighting the key effect of the formation of [2]catenane. Notably, the introduction of an additional pillar[5]arene macrocycle featuring unique planar chirality endows the resultant chiral VIE-active [2]catenane with attractive circularly polarized luminescence in different states. This work not only develops a new strategy for the design of new luminescent systems with tunable vibration induced emission, but also provides a promising platform for the construction of smart chiral luminescent materials for practical applications.
为了研究大环化和连环化对振动诱导发光(VIE)调控的影响,将典型的VIE发光体9,14-二苯基-9,14-二氢二苯并[a,c]吩嗪(DPAC)引入大环骨架和相应的[2]连环烷中,以评估它们的动态弛豫过程。通过飞秒瞬态吸收(TA)光谱详细研究发现,所得的VIE体系在改变溶剂粘度时显示出精确可调的发射,突出了[2]连环烷形成的关键作用。值得注意的是,引入具有独特平面手性的额外柱[5]芳烃大环,赋予所得手性VIE活性[2]连环烷在不同状态下具有吸引人的圆偏振发光。这项工作不仅开发了一种设计具有可调振动诱导发射的新型发光体系的新策略,还为构建用于实际应用的智能手性发光材料提供了一个有前景的平台。