Ren Shizhe, Liu Zheng-Fei, Li Penghao, Liu Haidi, Lu Miaosen, Wang Kang, Yao Jiannian, Dong Haiyun, Yang Qing-Zheng, Zhao Yong Sheng
Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202415092. doi: 10.1002/anie.202415092. Epub 2024 Oct 31.
Chiral supramolecular aggregates have the potential to explore circularly polarized lasing with large dissymmetry factors. However, the controllable assembly of chiral superstructures towards deterministic circularly polarized laser emission remains elusive. Here, we design a pair of chiral organic molecules capable of stacking into a pair of definite helical superstructures in microcrystals, which enables circularly polarized lasing with deterministic chirality and high dissymmetry factors. The microcrystals function as optical cavities and gain media simultaneously for laser oscillations, while the supramolecular helices endow the laser emission with strong and opposite chirality. As a result, the microcrystals of two enantiomers allow for circularly polarized laser emission with opposite chirality and high dissymmetry factors up to ~1.0. This work demonstrates the chiral supramolecular assemblies as an excellent platform for high-performance circularly polarized lasers.
手性超分子聚集体有潜力探索具有大不对称因子的圆偏振激光。然而,手性超结构向确定性圆偏振激光发射的可控组装仍然难以实现。在此,我们设计了一对手性有机分子,它们能够在微晶中堆叠成一对确定的螺旋超结构,从而实现具有确定性手性和高不对称因子的圆偏振激光发射。微晶同时作为激光振荡的光学腔和增益介质,而超分子螺旋赋予激光发射强烈且相反的手性。结果,两种对映体的微晶能够实现具有相反手性和高达~1.0的高不对称因子的圆偏振激光发射。这项工作证明了手性超分子组装体是高性能圆偏振激光器的优秀平台。