发光
材料科学
分子
卤素
手性(物理)
自组装
超分子手性
纳米技术
圆二色性
分形
化学物理
光电子学
结晶学
化学
超分子化学
手征对称破缺
有机化学
烷基
物理
对称性破坏
数学分析
量子力学
数学
Nambu–Jona Lasinio模型
作者
Shuyuan Zheng,Jianlei Han,Xue Jin,Qiang Ye,Jin Zhou,Pengfei Duan,Minghua Liu
标识
DOI:10.1002/anie.202108661
摘要
Abstract Self‐assembled chiroptical materials have attracted considerable attention due to their great applications in wide fields. During the chiral self‐assembly, it remains unknown how achiral molecules can affect the assembly process and their final chiroptical performance. Herein, we report an achiral molecule directed chiral self‐assembly via halogen bonds, exhibiting not only an unprecedented chiral fractal architecture but also significantly amplified circularly polarized luminescence (CPL). Two axially chiral emitters with halogen bond sites co‐assemble with an achiral 1,4‐diiodotetrafluorobenzene ( F 4 DIB) and well‐ordered chiral fractal structures with asymmetry amplification are obtained. The enhancement of the dissymmetry factors of the assemblies was up to 0.051 and 0.011, which was approximately 100 folds than those of the corresponding molecules. It was found that both the design of the chiral emitter and the highly directional halogen bond played an important role in hierarchically chirality transfer from chiral emitters to the micrometer scale chiral fractal morphology and amplified dissymmetry factors. We hope that this strategy can give a further insight into the fabrication of structurally unique featured highly efficient chiroptical materials.
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